Sebacid Acid (C10 Dibasic Acid) can be used as a surfactant in the lubricating oil industry to increase the antirust properties of lubricating oils on metals.
Sebacid Acid (C10 Dibasic Acid) is widely used in the preparation of Sebacid Acid (C10 Dibasic Acid) esters, such as dibutyl sebacate, dioctyl sebacate, diisooctyl sebacate.
Sebacid Acid (C10 Dibasic Acid) can also be used as raw material for producing nylon 1010, nylon 910, nylon 810, nylon 610, nylon 9 and high temperature resistant lubricating oil diethylhexyl ester.
CAS Number: 111-20-6
EC Number: 203-845-5
MDL number: MFCD00004440
Molecular Formula: C10H18O4
Linear Formula: HO2C(CH2)8CO2H
Molecular Weight: 202.25 g/mol
SYNONYMS:
1,8-Octanedicarboxylic Acid, Decanedioic Acid, Sebacic Acid Powder, Octadecanedioic Acid, Hexadecanedioic Acid, Dicarboxylic Acid, Sebacate, Sebacic Acid Flakes, Decanedioic acid, 1,8-Octanedicarboxylic acid, Decane-1,10-dioic acid, sebacic acid, DECANEDIOIC ACID, 111-20-6, 1,8-Octanedicarboxylic acid, 1,10-Decanedioic acid, Sebacinsaure, Decanedicarboxylic acid, n-Decanedioic acid, Acide sebacique, Sebacinsaeure, USAF HC-1, Ipomic acid, Seracic acid, NSC 19492, UNII-97AN39ICTC, 1,8-dicarboxyoctane, CCRIS 2290, EINECS 203-845-5, 97AN39ICTC, BRN 1210591, DTXSID7026867, CHEBI:41865, AI3-09127, NSC19492, MFCD00004440, NSC-19492, octane-1,8-dicarboxylic acid, POLY(SEBACIC ANHYDRIDE), DTXCID806867, EC 203-845-5, 4-02-00-02078 (Beilstein Handbook Reference), Sebacinsaure [German], Acide sebacique [French], SEBACIC ACID (MART.), SEBACIC ACID [MART.], CAS-111-20-6, n-Decanedioate, Iponic acid, disodium-sebacate, 4-oxodecanedioate, 1,10-Decanedioate, DECANEDIOC ACID, Sebacic acid, 94%, Sebacic acid, 99%, Dicarboxylic acid C10, 1i8j, 1l6s, 1l6y, 1,8-Octanedicarboxylate, WLN: QV8VQ, SEBACIC ACID [MI], SCHEMBL3977, NCIOpen2_008624, CHEMBL1232164, FEMA NO. 4943, 1,8-OCTANEDCARBOXYLIC ACID, Sebacic acid, >=95.0% (GC), Tox21_201778, Tox21_303263, BBL011473, LMFA01170006, s5732, STL146585, AKOS000120056, CCG-266598, CS-W015503, DB07645, GS-6713, HY-W014787, NCGC00164361-01, NCGC00164361-02, NCGC00164361-03, NCGC00257150-01, NCGC00259327-01, BP-27864, NCI60_001628, DB-121158, NS00011501, EN300-19796, C08277, Q413454, Q-201703, BRD-K66672047-304-01-3, Z104475420, 301CFA7E-7155-4D51-BD2F-EB921428B436, DECANEDIOIC ACID, sebacic, USAF hc-1, acidesebacique, SEBACIC ACID pure, n-Decanedioic acid, 1,10-Decanedioic acid, Decanedicarboxylic acid, sebacate (decanedioate), 1,8-OCTANEDICARBOXYLIC ACID, Sebacic acid, Decanedicarboxylic acid, 1,10-Decanedioic acid, 1,8-Octanedicarboxylic acid, Seracic acid, USAF HC-1, n-Decanedioic acid, NSC 19492, Ipomic acid, 1,10-Decanedioic acid, 1,8-Dicarboxyoctane, Decanedioic acid, Sebacinsaeure, 1,10-Decanedioate, Decanedioate, Sebacate, 1,8-Octanedicarboxylate, 1,8-Octanedicarboxylic acid, 4,7-Dioxosebacic acid, 4-Oxodecanedioate, 4-Oxodecanedioic acid, Acide sebacique, Decanedicarboxylic acid, Dicarboxylic acid C10, Ipomic acid, N-Decanedioate, N-Decanedioic acid, Sebacic acids, Sebacinsaure, Seracic acid, Sebacic acid, aluminum salt, Sebacic acid, monocadmium salt, Sebacic acid, sodium salt, Decanedioic acid; 1,8-Octanedicarboxylic acid, Sebacic Acid, Decanedioic Acid, 1,8-Octanedicarboxylic Acid, Sebacic Acid, 1,10-Decanedioic acid, Decanedioic acid, 1,8-Octanedicarboxylic acid, n-Decanedioic acid, Sebacinsäure, Acide sebacique, Sebacate, Decanedioic acid, 1,8-Octanedicarboxylic acid, Decane-1,10-dioic acid, Sebacic Acid, Decanedioic Acid, 1,8-Octanedicarboxylic Acid, Sebacic Acid, RARECHEM AL BO 0380;SEBACIC ACID;SEBACINIC ACID;DECANEDIOIC ACID;1,8-OCTANEDICARBOXYLIC ACID;1,10-Decanedioic acid;1,10-decanedioicacid;acidesebacique, decanedioic acid, 1,10- decanedioic acid, 1,8- dicarboxyoctane, ipomic acid, 1,8- octanedicarboxylic acid, sebacicacid, seracic acid
Sebacid Acid (C10 Dibasic Acid) is a natural C10 liquid fatty acid directly produced from castor oil.
Sebacid Acid (C10 Dibasic Acid) is an alpha,omega-dicarboxylic acid, the 1,8-dicarboxy derivative of octane.
Sebacid Acid (C10 Dibasic Acid) has a role as a human metabolite and a plant metabolite.
Sebacid Acid (C10 Dibasic Acid) naturally occurs in human sebum and the skin's extracellular matrix.
Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered crystal used in skincare formulations as a component of surfactants, lubricants, detergents, emulsifiers, etc.
Sebacid Acid (C10 Dibasic Acid) is a naturally occurring dicarboxylic acid with the chemical formula HO2C(CH2)8CO2H.
Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered solid.
Sebaceus is Latin for tallow candle, sebum is Latin for tallow, and refers to its use in the manufacture of candles.
Sebacid Acid (C10 Dibasic Acid) is a derivative of castor oil.
Sebacid Acid (C10 Dibasic Acid), also known as 1, 10-decanedioic acid, belongs to aliphatic dibasic acid.
Sebacid Acid (C10 Dibasic Acid) was present in the leaves of flue-cured tobacco, burley tobacco and aromatic tobacco.
Sebacid Acid (C10 Dibasic Acid) was white crystal in flake form at room temperature.
Slightly soluble in water, Sebacid Acid (C10 Dibasic Acid) was insoluble in benzene, petroleum ether, carbon tetrachloride.
In contrast, Sebacid Acid (C10 Dibasic Acid) was soluble in ethanol and ethyl ether.
Sebacid Acid (C10 Dibasic Acid) is a saturated, straight-chain naturally occurring dicarboxylic acid with 10 carbon atoms.
Sebacid Acid (C10 Dibasic Acid) is a normal urinary acid.
Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered crystal slightly soluble in water that has been proposed as an alternative energy substrate in total parenteral nutrition.
Sebacid Acid (C10 Dibasic Acid) was named from the Latin sebaceus (tallow candle) or sebum (tallow) in reference to its use in the manufacture of candles.
Sebacid Acid (C10 Dibasic Acid) and its derivatives such as azelaic acid have a variety of industrial uses as plasticizers, lubricants, hydraulic fluids, cosmetics, candles, etc.
Sebacid Acid (C10 Dibasic Acid) is used in the synthesis of polyamide and alkyd resins.
Sebacid Acid (C10 Dibasic Acid) is also used as an intermediate for aromatics, antiseptics and painting materials
Sebacid Acid (C10 Dibasic Acid) belongs to the class of organic compounds known as medium-chain fatty acids.
These are fatty acids with an aliphatic tail that contains between 4 and 12 carbon atoms.
Sebacid Acid (C10 Dibasic Acid) is a natural C10 liquid fatty acid, directly produced from castor oil.
Sebacid Acid (C10 Dibasic Acid) remains a cornerstone in the field of industrial chemistry, with its applications underscoring the compound's versatility and importance.
Understanding its properties, composition, and uses not only facilitates better handling and utilization but also highlights the potential of this compound in fostering innovations in various chemical products and processes.
As the demand for sustainable and efficient chemical solutions continues to grow, Sebacid Acid (C10 Dibasic Acid) will undoubtedly play a pivotal role in shaping future developments in the chemical industry.
Sebacid Acid (C10 Dibasic Acid) is soluble in water.
Sebacid Acid (C10 Dibasic Acid) is incompatible with bases, reducing agents and oxidizing agents.
Sebacid Acid (C10 Dibasic Acid) is a key dicarboxylic acid utilized in the synthesis of polymers, including nylons and a variety of high-performance polyesters and polyamides.
Sebacid Acid (C10 Dibasic Acid)'s role is critical in fostering esterification and polycondensation reactions, where it reacts with alcohols and amines to forge long, sturdy polymer chains.
These reactions are for the creation of materials that possess enhanced mechanical and thermal properties.
Sebacid Acid (C10 Dibasic Acid) is a naturally occurring dicarboxylic acid that has gained attention for its potential applications in various biological processes.
Recent studies have revealed Sebacid Acid (C10 Dibasic Acid)'s multifaceted roles, including but not limited to, energy storage, biosynthesis of essential molecules, and environmentally sustainable chemical production.
Sebacid Acid (C10 Dibasic Acid) is a long chain dicarboxylic acid, also known as decanedioic acid or DC10.
Sebacid Acid (C10 Dibasic Acid) is a biodegradable, white crystalline solid with a relatively high melting point, making it suitable for applications requiring heat resistance and stability.
Sebacid Acid (C10 Dibasic Acid) is largely produced from the renewable raw material castor oil or alternatively from microbial fermentation of alkanes.
Sebacid Acid (C10 Dibasic Acid) consists of a straight-chain carbon backbone which provides flexibility and hydrophobic properties.
Sebacid Acid (C10 Dibasic Acid) is used as a raw material for polymerization with hexamethylenediamine to form PA 6 & 10, which possess excellent chemical resistance, mechanical strength, and thermal stability.
These polyamides are used in applications such as textiles, carpets, automotive components, and electrical insulation.
Sebacid Acid (C10 Dibasic Acid) has a shelf life of 2 years.
Sebacid Acid (C10 Dibasic Acid) is REACH registered.
Sebacid Acid (C10 Dibasic Acid) is a castor-derived fatty acid and a precursor to various esters such as dioctyl sebacate, dibutyl sebacate, and dimethyl sebcate.
While the price is often tied to the castor crop yield each year, many consumers of Sebacid Acid (C10 Dibasic Acid) have become curious about how the chemical is produced from its castor oil feedstock.
Although Sebacid Acid (C10 Dibasic Acid) can be synthesized from phenols and cresols, castor oil oxidation is considered a more green and cost competitive method of Sebacid Acid (C10 Dibasic Acid) production.
First, the castor oil undergoes transesterification followed by steam cracking to yield ricinoleic acid.
This is accomplished by heating the castor oil to a high temperature (about 250°C) and mixing it with an alkali such as molten caustic soda.
The ricinoleic acid is then cleaved by caustic digestion to give capryl alcohol (2-octanol) and Sebacid Acid (C10 Dibasic Acid).
This method produces a fairly low yield of Sebacid Acid (C10 Dibasic Acid), and so further purification methods are used to result in higher purity yields.
An alternative production of Sebacid Acid (C10 Dibasic Acid) results in using adipic acid as a starting point.
In this process, high purity Sebacid Acid (C10 Dibasic Acid) results from an electro oxidation process.
This process was first developed by Asahi Chemical Industry in Japan and was also piloted by BASF in Germany.
First, adipic acid is partially esterified to form monomethyl adipate.
Through electrolysis of the potassium salt of moneomethyl adipate dissolved in methanol and water, dimethyl sebacate is created.
The dimethyl sebcate then is hydrolyzed to form Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid), a C10 dicarboxylic acid derived from castor oil, stands as a cornerstone in the chemical industry, particularly for its role in polymer synthesis.
Its unique structure and properties make Sebacid Acid (C10 Dibasic Acid) an indispensable component for manufacturers seeking high-performance materials.
As a leading Sebacid Acid (C10 Dibasic Acid) supplier, we understand the critical need for quality and consistency in industrial applications.
Sebacid Acid (C10 Dibasic Acid) is a C10 di-functional fatty acid with natural origin.
Sebacid Acid (C10 Dibasic Acid) s in the form of white granular or powder.
Sebacid Acid (C10 Dibasic Acid) is a naturally occurring dicarboxylic acid with the formula (CH₂)₈(CO₂H)₂.
Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered solid.
Sebacid Acid (C10 Dibasic Acid) acts as a buffering agent for pH adjustment or a chemical intermediate in the synthesis of various esters.
Sebacid Acid (C10 Dibasic Acid) is a naturally occurring dicarboxylic acid which is a derivative of castor oil.
Sebacid Acid (C10 Dibasic Acid) is recommended for cosmetics formulations.
Sebacid Acid (C10 Dibasic Acid) is a versatile compound with multiple industrial and commercial uses.
This dicarboxylic acid, often sourced from castor oil, Sebacid Acid (C10 Dibasic Acid) is key in producing polymers, plasticizers, and lubricants.
Its biodegradable nature makes Sebacid Acid (C10 Dibasic Acid) a popular choice for environmentally friendly applications, enhancing sustainability in various sectors.
Historically, Sebacid Acid (C10 Dibasic Acid) has played a significant role in manufacturing processes due to its excellent performance as an intermediate in the production of several chemicals.
Sebacid Acid (C10 Dibasic Acid)'s particularly appreciated in the polymer industry for producing nylon and other resins, which are essential in manufacturing consumer goods.
With growing environmental awareness, Sebacid Acid (C10 Dibasic Acid)'s significance continues to rise.
Sebacid Acid (C10 Dibasic Acid)'s use in developing eco-friendly materials highlights its potential in reducing dependency on non-renewable resources.
As industries seek sustainable options, Sebacid Acid (C10 Dibasic Acid) remains at the forefront, contributing to greener technologies and innovations.
Sebacid Acid (C10 Dibasic Acid) is a regular dicarboxylic acid that is used in the chemical industry, primarily for the production of plastics and plasticizers.
Sebacid Acid (C10 Dibasic Acid) is mainly obtained from sodium sebacate, which is produced by splitting ricinoleic acid with the help of sodium hydroxide.
Ricinoleic acid is the main component of castor oil and is therefore a biologically renewable raw material.
In addition, there are other processes for the production of Sebacid Acid (C10 Dibasic Acid), for example by oxidation of 1,10-decanediol and stearic acid, by decarboxylation of monomethyl adipate or in the course of fermentation processes.
Sebacid Acid (C10 Dibasic Acid) is a C10 dibasic acid.
In its pure state, Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered crystal.
Sebacid Acid (C10 Dibasic Acid) is produced from castor oil.
Sebacid Acid (C10 Dibasic Acid) is a linear aliphatic dicarboxylic acid (10-carbon chain) that is used primarily as an intermediate in industrial applications (plastics, polyamides, etc.), and also finds uses in lubricants, plasticizers and potentially cosmetic formulations (though not as common as smaller acids).
Sebacid Acid (C10 Dibasic Acid) can be produced from castor oil and is considered a “bio-based” raw material in some contexts.
Sebacid Acid (C10 Dibasic Acid) (CAS 111-20-6; EC 203-845-5) is a 10-carbon linear di-carboxylic acid (C₁₀H₁₈O₄) with a variety of industrial uses (polymer intermediates, plasticizers, lubricants).
While Sebacid Acid (C10 Dibasic Acid) does have some presence in cosmetics registries (INCI) the documentation of its direct “benefits” in skin-care is limited compared to smaller acids (e.g., glycolic acid).
Sebacid Acid (C10 Dibasic Acid)'s major characteristics include its crystalline solid form, moderate melting point (~131-134 °C), limited water solubility, good compatibility in ester chemistry and polymerisation applications.
In formulation and usage, ensuring correct grade, handling, storage and regulatory compliance are key.
Sebacid Acid (C10 Dibasic Acid) is a naturally occurring dicarboxylic acid with the chemical formula HO2C(CH2)8CO2H.
Sebacid Acid (C10 Dibasic Acid) is a white flake or powdered solid.
Sebaceus is Latin for tallow candle, sebum is Latin for tallow, and refers to its use in the manufacture of candles.
Sebacid Acid (C10 Dibasic Acid) is a derivative of castor oil.
USES and APPLICATIONS of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid)'s applications are incredibly diverse, extending from its role as a monomer in the production of nylon (nylon 6,10) to its use as a plasticizer, lubricant, and hydraulic fluid, and in the manufacturing of cosmetics.
Sebacid Acid (C10 Dibasic Acid)'s utility is particularly notable in the synthesis of polyamide and alkyd resins, where it imparts critical properties such as durability, flexibility, and resistance to harsh chemicals and temperature variations.
Additionally, Sebacid Acid (C10 Dibasic Acid) is crucial in the production of adhesives and sealants, enhancing their performance by improving adhesion and flexibility.
Sebacid Acid (C10 Dibasic Acid)'s role in the creation of bioplastics is also significant, highlighting the industry's shift towards sustainable and environmentally friendly practices.
Sebacid Acid (C10 Dibasic Acid)'s applications in the automotive and electrical industries as a corrosion inhibitor and dielectric fluid respectively, further demonstrate its broad utility.
These uses underscore the versatility of Sebacid Acid (C10 Dibasic Acid), making it an essential component in a myriad of industrial applications that demand high performance and sustainability.
Sebacid Acid (C10 Dibasic Acid) is an aliphatic saturated 10-carbon dicarboxylic acid (DCA) with multiple applications.
Sebacid Acid (C10 Dibasic Acid)'most common application in the plastics industry is the production of polyamide polymers (e.g. PA 6,10, PA 4,10, and PA 10,10), which confers important properties such as flexibility, hydrophobicity, durability, and low melting temperatures.
Sebacid Acid (C10 Dibasic Acid) is also applied to dibasic polyesters to yield flexibility, stability, chemical, and solvent resistance.
Moreover, Sebacid Acid (C10 Dibasic Acid) produces lubricants, such as dioctyl sebacate (DOS) and dihexyl sebacate (DHS).
Another interesting application of Sebacid Acid (C10 Dibasic Acid) is the development of chitosan- and collagen-based 3D scaffold materials, which are biocompatible and mechanically resistant.
Sebacid Acid (C10 Dibasic Acid)'s also an intermediate product of the body's medium- and long-chain fatty acids metabolism, so it's a safe ingredient for cosmetics and skincare products.
In vitro studies showed that Sebacid Acid (C10 Dibasic Acid) can cross-link with collagen type I and improve its mechanical properties.
Thus, besides moisturizers, Sebacid Acid (C10 Dibasic Acid) is used in formulas to improve the skin's elasticity and surface texture, minimizing the appearance of blemishes and breakouts.
In the industrial setting, Sebacid Acid (C10 Dibasic Acid) and its homologues such as azelaic acid can be used as a monomer for nylon 610, plasticizers, lubricants, hydraulic fluids, cosmetics, candles, etc.
Sebacid Acid (C10 Dibasic Acid) can be used as a surfactant in the lubricating oil industry to increase the antirust properties of lubricating oils on metals.
Sebacid Acid (C10 Dibasic Acid) is widely used in the preparation of Sebacid Acid (C10 Dibasic Acid) esters, such as dibutyl sebacate, dioctyl sebacate, diisooctyl sebacate.
These esters can be used as plasticizers for plastics and cold-resistant rubber, as well as for polyamide, polyurethane, alkyd resin, synthetic lubricating oil, lubricating oil additives, spices, coatings, cosmetics, etc.
Sebacid Acid (C10 Dibasic Acid) can also be used as raw material for producing nylon 1010, nylon 910, nylon 810, nylon 610, nylon 9 and high temperature resistant lubricating oil diethylhexyl ester.
Sebacid Acid (C10 Dibasic Acid) is also the raw material for the production of alkyd resins (used as surface coatings, plasticized nitrocellulose coatings, and urea resin varnishes) and polyurethane rubber, cellulose resins, vinyl resins, and synthetic rubber plasticizers, softeners, and solvents.
Sebacid Acid (C10 Dibasic Acid) was first obtained by retorting of castor oil in present of alkali.
Then, a synthetic method was developed.
Currently, a new route employing n-alkanes to produce Sebacid Acid (C10 Dibasic Acid) through fermentation was under developing.
Another production method of Sebacid Acid (C10 Dibasic Acid) is the electrolytic oxidation method of adipic acid developed.
Due to the cost, Sebacid Acid (C10 Dibasic Acid) was not widely used.
The Sebacid Acid (C10 Dibasic Acid) is also widely used as a synthesis intermediate to produce sebacates esters such as DIPS or DIS (diisopropyl sebacate), DOS (diethylhexyl sebacate), DES (diethyl sebacate) and DBS (dibutyl sebacate).
These sebacate are used as: emollient, solvent, plasticizer, masking (reducing or inhibiting the basic odour of the product), film forming, hair or skin conditioning.
Generally, sebacate esters are claimed to enable a good penetration, give a non-oily and silky skin feel.
These esters are also recognized to be good pigment dispersant (DOS), be good sun protection factor (SPF) booster (DIPS blended), and prevent whitening in antiperspirant (DIPS).
Plasticizers applications of Sebacid Acid (C10 Dibasic Acid): The Sebacid Acid (C10 Dibasic Acid) (DC 10), is widely used to produce a various range of plastics, and brings to those plastics a bio-based part.
Sebacid Acid (C10 Dibasic Acid) is used as a monomer for nylon 610, plasticizers, lubricants, hydraulic fluids, cosmetics and candles.
Sebacid Acid (C10 Dibasic Acid) is also used as intermediates in antiseptics, aromatics and painting materials.
Sebacid Acid (C10 Dibasic Acid) is used in the synthesis of poly(glycerol sebacate) and novel bio-nylon.
Sebacid Acid (C10 Dibasic Acid) finds application as adhesives, corrosion inhibitors and solvents.
Sebacid Acid (C10 Dibasic Acid)'s derivative, diethyl Sebacate is used in plastics manufacturing and engineering, as well as drug delivery procedures through the use of biodegradable encapsulations.
Sebacid Acid (C10 Dibasic Acid) is used as a monomer for nylon 610, plasticizers, lubricants, hydraulic fluids, cosmetics and candles.
Sebacid Acid (C10 Dibasic Acid) is also used as intermediates in antiseptics, aromatics and painting materials.
Sebacid Acid (C10 Dibasic Acid) is used in the synthesis of poly(glycerol sebacate) and novel bio-nylon.
Sebacid Acid (C10 Dibasic Acid) finds application as adhesives, corrosion inhibitors and solvents.
Sebacid Acid (C10 Dibasic Acid)'s derivative, diethyl Sebacate is used in plastics manufacturing and engineering, as well as drug delivery procedures through the use of biodegradable encapsulations.
Sebacid Acid (C10 Dibasic Acid) is a versatile compound used in various industries due to its properties such as flexibility and biodegradability.
Sebacid Acid (C10 Dibasic Acid) finds significant applications in producing plasticizers, industrial lubricants, cosmetics, and pharmaceuticals.
The polymers derived from Sebacid Acid (C10 Dibasic Acid) are notable for their high molecular weight and are distinguished by their robustness, elasticity, and resistance to chemical degradation.
Consequently, Sebacid Acid (C10 Dibasic Acid) is indispensable in the development of advanced materials that meet the stringent demands of various industrial applications, ranging from automotive components to construction materials, due to its ability to contribute to the material′s performance and durability.
Sebacid Acid (C10 Dibasic Acid) has many modern industrial applications.
Sebacid Acid (C10 Dibasic Acid) can be used as a monomer for nylon 610, plasticizers, lubricants, hydraulic fluids, cosmetics, candles, and more.
Sebacid Acid (C10 Dibasic Acid) can also be used as a surfactant in the lubricating oil industry to increase the anti-rust properties of lubricating oils on metals.
In addition, Sebacid Acid (C10 Dibasic Acid) is an important component in the production of bio-based polymers with applications in biomedical engineering, drug delivery and tissue engineering.
For example, poly (glycerol sebacate) is a biodegradable elastomer made by the polycondensation of glycerol and Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid) has been widely used in tissue engineering for cardiovascular, neural, cartilage, bone and corneal tissues as well as drug delivery systems and wound healing.
The primary industrial application of Sebacid Acid (C10 Dibasic Acid) lies in its use as a monomer for the production of Nylon 6-10.
This polyamide exhibits excellent flexibility, good abrasion resistance, and a low moisture absorption rate, making it suitable for various applications, including filaments, brush bristles, and automotive parts.
The bio-based origin of Sebacid Acid (C10 Dibasic Acid) further enhances the sustainability profile of Nylon 6-10, aligning with the growing demand for eco-friendly materials.
Beyond nylon, Sebacid Acid (C10 Dibasic Acid) is a key ingredient in the manufacturing of plasticizers.
These additives are crucial for enhancing the flexibility and workability of plastics, particularly PVC.
Sebacid Acid (C10 Dibasic Acid)-based plasticizers are valued for their low-temperature performance and durability, offering a competitive edge in industries ranging from automotive to consumer goods.
Procurement of high-purity Sebacid Acid (C10 Dibasic Acid) from a reliable manufacturer is paramount to achieving these desired plasticizer properties.
Furthermore, Sebacid Acid (C10 Dibasic Acid) plays a significant role in the production of lubricants and greases.
Its inherent lubricity and thermal stability contribute to the formulation of high-performance lubricants for demanding applications, including those in the automotive and aerospace sectors.
As a corrosion inhibitor, Sebacid Acid (C10 Dibasic Acid) forms a protective layer on metal surfaces, preventing degradation.
For those looking to buy Sebacid Acid (C10 Dibasic Acid) for these industrial uses, partnering with a reputable supplier ensures product integrity and consistent performance.
Sebacid Acid (C10 Dibasic Acid), a naturally occurring dicarboxylic acid with the formula, plays a critical role in various industrial applications due to its unique chemical properties.
Sebacid Acid (C10 Dibasic Acid) finds an important use in the production of polyamides.
For example, the polyamide (nylon) 6.10 can be produced from Sebacid Acid (C10 Dibasic Acid) or Sebacid Acid (C10 Dibasic Acid) dichloride and hexamethylenediamine.
Acid diesters with alcohols such as 1-butanol or 2-ethylhexanol are used as plasticizers.
In polycondensation with glycerine, biologically well-tolerated plastics for surgery and medical research can be produced from Sebacid Acid (C10 Dibasic Acid).
The esters of the acid serve as plasticizers, extenders, and lubricants.
Sebacid Acid (C10 Dibasic Acid) is also used in paints, candles and cosmetic products.
Areas of application of Sebacid Acid (C10 Dibasic Acid): Production of polyamides and polyesters, use of the esters as plasticizers, extenders and lubricants.
Sebacid Acid (C10 Dibasic Acid) is widely used in Plasticizers, Lubricants, Solvents, Adhesives, Chemical Intermediates industries.
One of the most common uses for Sebacid Acid (C10 Dibasic Acid) is in the manufacturing of candles.
Sebacid Acid (C10 Dibasic Acid) also shows up in the industrial industry, being used as a monomer and intermediate for various products and materials.
Precursor / intermediate in polymer chemistry: for example in the production of nylon-6,10 (polyamide) when combined with hexamethylene diamine.
Plasticizers & lubricants: Sebacid Acid (C10 Dibasic Acid) is used as the acid component in esters (“sebacate esters”) used for PVC, plastic sheets, etc.
Metalworking fluids / corrosion inhibitors: e.g., in hydraulic fluids, lubricants where the acid (or its salts) help anti-rust behaviour.
Potential use of Sebacid Acid (C10 Dibasic Acid) in cosmetics / personal care: while not as common, some sources list it as a specification in cosmetic ingredient registries (INCI) for “Sebacid Acid (C10 Dibasic Acid)”.
Bio-based feedstock: Some producers highlight Sebacid Acid (C10 Dibasic Acid) derived from castor oil or other renewable sources.
In the industrial setting, Sebacid Acid (C10 Dibasic Acid) and its homologues such as azelaic acid can be used as a monomer for nylon 610, plasticizers, lubricants, hydraulic fluids, cosmetics, candles, etc.
Sebacid Acid (C10 Dibasic Acid) can be used as a surfactant in the lubricating oil industry to increase the antirust properties of lubricating oils on metals.
-Plasticizers in Plastics use of Sebacid Acid (C10 Dibasic Acid):
Sebacid Acid (C10 Dibasic Acid) serves as a crucial ingredient in making plasticizers.
Sebacid Acid (C10 Dibasic Acid) enhances the flexibility and durability of various polymers.
Commonly used with compounds like dioctyl sebacate, Sebacid Acid (C10 Dibasic Acid) improves the performance of products, such as automotive components, cables, and films.
Due to its non-toxic nature, Sebacid Acid (C10 Dibasic Acid) is also a preferred choice in food-grade plastics.
The cost-effectiveness of Sebacid Acid (C10 Dibasic Acid), combined with its biodegradable properties, makes it a popular choice.
This is critical as industries seek alternatives to reduce environmental impact.
-Industrial Lubricants uses of Sebacid Acid (C10 Dibasic Acid):
In industrial settings, Sebacid Acid (C10 Dibasic Acid) is used to formulate lubricants that withstand high temperatures and pressures.
These lubricants ensure smooth machinery operation, reducing wear and tear.
Its stability and resistance to oxidation make Sebacid Acid (C10 Dibasic Acid) ideal for long-lasting applications.
-Biomarker of liver aging:
Sebacid Acid (C10 Dibasic Acid) is known to be an end product of the ω-oxidation of decanoic acid and can further convert into acetyl-CoA via β-oxidation.
In contrast, a previous study has shown that patients with Acadm deficiency exhibit high levels of plasma Sebacid Acid (C10 Dibasic Acid) due to a reduction in β-oxidation.
Thus, the up-regulation of β-oxidation enzymes in mouse liver, including Acadm, Echs1, Hsd17b4, Ehhadh and Acaa1a, could potentially help prevent the accumulation of Sebacid Acid (C10 Dibasic Acid) in plasma.
-Modern industrial applications of Sebacid Acid (C10 Dibasic Acid):
Sebacid Acid (C10 Dibasic Acid) has been historically used in the production of candles, soaps, and greases.
However, recent advancements have allowed for the discovery of new applications for this versatile compound.
Sebacid Acid (C10 Dibasic Acid) is commonly used as a building block for the production of bioplastics made from renewable sources.
Sebacid Acid (C10 Dibasic Acid) can be polymerized with other organic compounds to form biodegradable and sustainable plastics.
In addition, Sebacid Acid (C10 Dibasic Acid) is used in the automotive industry as a plasticizer to improve the flexibility, durability, and temperature resistance of car plastics.
Sebacid Acid (C10 Dibasic Acid) is also used in the fiber industry as a chemical intermediate in the manufacture of high-performance fibers such as nylon and polyester, improving stability, elasticity, and resistance properties.
Sebacid Acid (C10 Dibasic Acid)'s unique properties and versatility have made it an essential component in various modern industries such as metalworking and personal care products.
-Major Applications: Sebacid Acid (C10 Dibasic Acid) offers a competitve solution in many applications:
To produce polymers
In industry: to produce plasticizers, lubricants, and corrosion retardants
In cosmetics: as buffering ingredient or as a chemical intermediate to produce a wide range of esters
-Cosmetic applications of Sebacid Acid (C10 Dibasic Acid):
Sebacid Acid (C10 Dibasic Acid) can be used directly in cosmetics formulation as a pH corrector (buffering).
In this case, the main applications of Sebacid Acid (C10 Dibasic Acid) are skin care (mainly face/neck care), and color cosmetics.
-Cosmetic Industry uses of Sebacid Acid (C10 Dibasic Acid):
The cosmetic sector benefits from the emollient properties of Sebacid Acid (C10 Dibasic Acid), providing moisturization and softness to skin care products.
Sebacid Acid (C10 Dibasic Acid) is often found in lotions, creams, and sunscreens.
Its non-irritating nature makes it suitable for sensitive skin.
Sebacid Acid (C10 Dibasic Acid) also acts as a film-forming agent in hair care products, providing a protective barrier.
The trend towards eco-friendly and sustainable ingredients highlights its increasing demand in cosmetics formulations.
-Pharmaceutical Applications of Sebacid Acid (C10 Dibasic Acid):
In pharmaceuticals, Sebacid Acid (C10 Dibasic Acid) is involved in drug delivery systems, particularly in controlled-release medications.
Its ability to form biodegradable polymers enhances the effectiveness of therapeutic agents.
Sebacid Acid (C10 Dibasic Acid) is also used as a stabilizer in injectable medicines.
Sebacid Acid (C10 Dibasic Acid) improves the shelf-life and efficacy of these drugs.
Given the precise nature of pharmaceutical production, Sebacid Acid (C10 Dibasic Acid)'s consistent quality standards make it indispensable in this field.
PROPERTIES of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is derived primarily from the seeds of castor oil plants where it appears as a white flake or powdered form.
Sebacid Acid (C10 Dibasic Acid) is biodegradable, non-toxic, and possesses a melting point of 131-134.5°C, which makes it highly valuable in high-temperature applications.
Soluble in water, ethanol, and ether, Sebacid Acid (C10 Dibasic Acid) exhibits excellent compatibility with a wide range of chemical substances, enhancing its utility across various chemical processes.
Sebacid Acid (C10 Dibasic Acid) also exhibits low volatility and good thermal stability, attributes that make it an ideal ingredient in the synthesis of polymeric materials.
Sebacid Acid (C10 Dibasic Acid)'s environmental friendliness and efficacy in promoting material durability further elevate its standing in sectors such as automotive, aerospace, and electronics, where performance and sustainability are paramount.
MAIN COMPONENTS of SEBACID ACID (C10 DIBASIC ACID):
The primary source of Sebacid Acid (C10 Dibasic Acid) is the castor oil plant, specifically from castor seed oil, which undergoes pyrolysis to yield this important organic compound.
During this process, castor seed oil is heated in the absence of air, leading to the decomposition of ricinoleic acid, the major component of castor oil.
The production process also involves the cleavage of ricinoleic acid, extracted from castor oil, under heat and pressure, leading to the formation of Sebacid Acid (C10 Dibasic Acid) and other byproducts.
The resulting Sebacid Acid (C10 Dibasic Acid) can be further refined to remove impurities, enhancing its purity.
Depending on the intended industrial application, the purity of Sebacid Acid (C10 Dibasic Acid), along with its specific formulation, can be adjusted, making its composition highly versatile.
This flexibility in production allows manufacturers to tailor Sebacid Acid (C10 Dibasic Acid) to meet specific performance criteria, making it indispensable in the creation of a wide range of products, from plastics to lubricants.
STORAGE METHODS of SEBACID ACID (C10 DIBASIC ACID):
Storing Sebacid Acid (C10 Dibasic Acid) requires specific conditions to maintain its chemical integrity and prevent degradation.
Sebacid Acid (C10 Dibasic Acid) should be stored in a cool, dry place away from direct sunlight and moisture.
Containers must be tightly sealed to avoid contamination.
For large-scale storage, Sebacid Acid (C10 Dibasic Acid) is recommended to use corrosion-resistant containers under nitrogen to prevent oxidation.
Proper storage conditions help preserve Sebacid Acid (C10 Dibasic Acid)'s efficacy and extend its shelf life, which is crucial for maintaining its industrial value.
POTENTIAL MEDICAL SIGNIFICANCE of SEBACID ACID (C10 DIBASIC ACID):
Sebum is a secretion by skin sebaceous glands.
It is a waxy set of lipids composed of triglycerides (≈41%), wax esters (≈26%), squalene (≈12%), and free fatty acids (≈16%).[6][7]
Included in the free fatty acid secretions in sebum are polyunsaturated fatty acids and Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid) is also found in other lipids that coat the skin surface.
Human neutrophils can convert Sebacid Acid (C10 Dibasic Acid) to its 5-oxo analog, i.e., 5-oxo-6E,8Z-octadecenoic acid, a structural analog of 5-oxo-eicosatetraenoic acid and like this oxo-eicosatetraenoic acid is an exceptionally potent activator of eosinophils, monocytes, and other pro-inflammatory cells from humans and other species.
This action is mediated by the OXER1 receptor on these cells.
It is suggested that Sebacid Acid (C10 Dibasic Acid) is converted to its 5-oxo analog during, and thereby stimulates pro-inflammatory cells to contribute to the worsening of, various inflammatory skin conditions.
PROPERTIES of SEBACID ACID (C10 DIBASIC ACID):
*High purity
*100% of vegetal origin
*Linear chain
*Granules or powder forms
*High reactivity to produce a wide range of esters
KEY BENEFITS of SEBACID ACID (C10 DIBASIC ACID):
In cosmetic products, Sebacid Acid (C10 Dibasic Acid) can act as a pH corrector.
In plastics, Sebacid Acid (C10 Dibasic Acid) can be used to provide better flexibility and lower melting temperature.
For lubricants and anti-corrosion applications, Sebacid Acid (C10 Dibasic Acid) is used to produce a salt derivative that can be used as a coolant for aircraft, automotive and truck engines.
Here are the attributes that make Sebacid Acid (C10 Dibasic Acid) as flexible as it is.
*Excellent lubricity
*Low temperature fluidity
*Higher thermal stability
*High flash points
*Low pour points
Sebaceus is Latin for tallow candle, and sebum is Latin for tallow.
These terms refer to the use of Sebacid Acid (C10 Dibasic Acid) in the manufacturing of candles.
But as stated above, Sebacid Acid (C10 Dibasic Acid) has a lot of uses for the industrial setting.
Sebacid Acid (C10 Dibasic Acid) can be used as a monomer for nylon, lubricants, hydraulic fluids, cosmetics, plasticizers and more.
Sebacid Acid (C10 Dibasic Acid) can also be used as an intermediate for antiseptics, aromatics and painting products.
PREPARATION FOR SEBACID ACID (C10 DIBASIC ACID):
(1) cracking method of castor oil: castor oil was heated and hydrolyzed under the action of alkali to produce sodium castor oleate soap, and then sulfuric acid was added to produce castor oleic acid.
In the presence of the diluent cresol, alkali was added and heated to 260-280℃ for cracking to produce disodium sebacate, octanol and hydrogen.
Diluted with water, the disodium salt was heated and neutralized with acid to turn the disodium salt into mono-sodium salt.
Then, activated carbon was used for decolorization.
The neutral liquid was heated to be boiling and then with the addition of acid Sebacid Acid (C10 Dibasic Acid) mono-sodium salt was acidolyzed into Sebacid Acid (C10 Dibasic Acid) to precipitate.
Then, after separation, drying, Sebacid Acid (C10 Dibasic Acid) could be obtained.
(2) fermentation of n-decane: Sebacid Acid (C10 Dibasic Acid) can be obtained by fermentation of n-decane with 19-2 candida lipolytica.
(3) new method employing cyclopentanone as substrate: using palladium-copper or iron as catalyst, cyclopentanone is oxidized by air to cyclopentanone in ethanol, propanol or other alcohols under low temperature and moderate atmospheric pressure at 40-60℃.
Then, cyclopentanone is oxidized and dimerized with iron catalyst to form Sebacid Acid (C10 Dibasic Acid).
Potential medical significance
Sebum is a secretion by skin sebaceous glands.
It is a waxy set of lipids composed of triglycerides (≈41%), wax esters (≈26%), squalene (≈12%), and free fatty acids (≈16%).[6][7]
Included in the free fatty acid secretions in sebum are polyunsaturated fatty acids and Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid) is also found in other lipids that coat the skin surface.
Human neutrophils can convert Sebacid Acid (C10 Dibasic Acid) to its 5-oxo analog, i.e., 5-oxo-6E,8Z-octadecenoic acid, a structural analog of 5-oxo-eicosatetraenoic acid and like this oxo-eicosatetraenoic acid is an exceptionally potent activator of eosinophils, monocytes, and other pro-inflammatory cells from humans and other species.
This action is mediated by the OXER1 receptor on these cells.
It is suggested that Sebacid Acid (C10 Dibasic Acid) is converted to its 5-oxo analog during, and thereby stimulates pro-inflammatory cells to contribute to the worsening of, various inflammatory skin conditions.
POTENTIAL MEDICAL SIGNIFICANCE of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is produced from castor oil.
Sebacid Acid (C10 Dibasic Acid)’s mostly colorless but can be a light shade of yellow.
Sebacid Acid (C10 Dibasic Acid) also has a mild odor to it, though nothing that stands out.
There are two ways that Sebacid Acid (C10 Dibasic Acid) can be produced: castor oil and adipic acid.
It’s far more common for Sebacid Acid (C10 Dibasic Acid) to be derived from castor oil, as the process is green and cost effective.
To make the Sebacid Acid (C10 Dibasic Acid), the castor oil is heated to high temperatures with alkali.
The purity of Sebacid Acid (C10 Dibasic Acid) is based on the type of reaction it has.
Generally, modern conversion technology leads to a purer product.
CHEMICAL STRUCTURE AND PROPERTIES of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is an organic compound with a long carbon chain.
The structure and characteristics of Sebacid Acid (C10 Dibasic Acid) define its function and utility in various industrial applications.
Understanding Sebacid Acid (C10 Dibasic Acid)'s molecular makeup allows for better applications in fields like polymer production.
PHYSICAL CHARACTERISTICS of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is a white crystalline powder.
Sebacid Acid (C10 Dibasic Acid) has the chemical formula C₁₀H₁₈O₄, with a linear structure composed of ten carbon atoms.
This structure makes Sebacid Acid (C10 Dibasic Acid) a type of dicarboxylic acid.
Sebacid Acid (C10 Dibasic Acid) is known for its high melting point, ranging between 131 to 134°C.
Sebacid Acid (C10 Dibasic Acid) is insoluble in water but dissolves in alcohol and ether.
These properties make Sebacid Acid (C10 Dibasic Acid) valuable in the production of nylon, resins, and plasticizers, providing durability and flexibility to synthetic materials.
PRODUCTION AND REACTIONS of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is produced from castor oil by cleavage of ricinoleic acid, which is obtained from castor oil.
Octanol and glycerin are byproducts.
It can also be obtained from decalin via the a hydroperoxide, which rearranges to give a hydroxycyclodecanone, which dehydrates to give cyclodecenone, a precursor to Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid) has also been produced commercially by Kolbe electrolysis of adipic acid.
ALTERNATIVE PARENTS of SEBACID ACID (C10 DIBASIC ACID):
*Dicarboxylic acids and derivatives
*Carboxylic acids
*Organic oxides
*Hydrocarbon derivatives
*Carbonyl compounds
SUBSTITUENTS of SEBACID ACID (C10 DIBASIC ACID):
*Medium-chain fatty acid
*Dicarboxylic acid or derivatives
*Carboxylic acid
*Carboxylic acid derivative
*Organic oxygen compound
*Organic oxide
*Hydrocarbon derivative
*Organooxygen compound
*Carbonyl group
*Aliphatic acyclic compound
BENEFITS / CHARACTERISTICS of SEBACID ACID (C10 DIBASIC ACID):
Because Sebacid Acid (C10 Dibasic Acid) is a long-chain dicarboxylic acid, it imparts certain mechanical or chemical stability when used in polymers (e.g., good thermal stability, toughness).
In plasticizer esters, the “sebacate” versions often yield flexibility, low-temperature performance, good compatibility with PVC etc.
From a sustainability viewpoint, Sebacid Acid (C10 Dibasic Acid)'s production from castor oil gives a renewable origin angle.
In formulations (cosmetics) where used, Sebacid Acid (C10 Dibasic Acid) may serve as a buffering or acid component, or as a raw material for esters (though direct cosmetic benefit is less documented).
KEY PROPERTIES of SEBACID ACID (C10 DIBASIC ACID):
*High thermal stability
*Low toxicity
*Biodegradability
These attributes make Sebacid Acid (C10 Dibasic Acid) a reliable component in both automotive and aviation industries, where high-performance lubricants are crucial.
PRODUCE PROCESS of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is normally made from castor oil, essentially glyceryl ricinoleate.
The castor oil is treated with caustic soda at high temperatures, for example, 250 °C, so that saponification, leading to the formation of ricinoleic acid, is followed by a reaction giving Sebacid Acid (C10 Dibasic Acid) and octan-2-ol.
Because of the by-products formed, the yield of Sebacid Acid (C10 Dibasic Acid) is necessarily low, and in practice, yields of 50–55% (based on the castor oil) are considered good.
Sebacid Acid (C10 Dibasic Acid) may also be produced by an electrooxidation process developed by the Asahi Chemical Industry in Japan and piloted by BASF in Germany.
It produces high-purity Sebacid Acid (C10 Dibasic Acid) from readily available adipic acid.
The process consists of three steps.
Adipic acid is partially esterified to the monomethyl adipate.
Electrolysis of the potassium salt of monomethyl adipate in a mixture of methanol and water gives dimethyl sebacate.
The last step is the hydrolysis of dimethyl sebacate to Sebacid Acid (C10 Dibasic Acid).
Overall yields are reported to be about 85%.
PRODUCTION AND REACTIONS of SEBACID ACID (C10 DIBASIC ACID):
Sebacid Acid (C10 Dibasic Acid) is produced from castor oil by cleavage of ricinoleic acid, which is obtained from castor oil.
Octanol and glycerin are byproducts.
It can also be obtained from decalin via the a hydroperoxide, which rearranges to give a hydroxycyclodecanone, which dehydrates to give cyclodecenone, a precursor to Sebacid Acid (C10 Dibasic Acid).
Sebacid Acid (C10 Dibasic Acid) has also been produced commercially by Kolbe electrolysis of adipic acid.
BIO-BASED POLYMERS IN BIOMEDICAL ENGINEERING of SEBACID ACID (C10 DIBASIC ACID):
*Poly (glycerol sebacate)
Poly (glycerol sebacate) continues to attract attention for biomedical applications owing to its favorable combination of properties.
Conventionally polymerized by a two-step polycondensation of glycerol and Sebacid Acid (C10 Dibasic Acid), variations of synthesis parameters, reactant concentrations or by specific chemical modifications, Poly (glycerol sebacate) materials can be obtained exhibiting a wide range of physicochemical, mechanical, and morphological properties for a variety of applications.
Poly (glycerol sebacate) has been extensively used in tissue engineering of cardiovascular, nerve, cartilage, bone and corneal tissues.
*Polyanhydride copolymer
A polyanhydride copolymer of carboxyphenoxy propane and Sebacid Acid (C10 Dibasic Acid) has been used in Gliadel brain tumor implants for the controlled delivery of carmustine or bis-chloroethylnitrosourea.
Sebacid Acid (C10 Dibasic Acid) is a bioresorbable medicinal implant that is used to deliver anticancer agents to cerebral tumor sites.
However, the number of polyanhydride products available in the market is less compared to polyester-based products.
The main reasons are limited shelf-life and lack of synthesis methods that produce polymers with narrow dispersity.
Despite these shortcomings polyanhydride biomaterials continue to thrive, and numerous improvements have been developed.
PHYSICAL and CHEMICAL PROPERTIES of SEBACID ACID (C10 DIBASIC ACID):
EC Number: 203-845-5
CAS Number: 111-20-6
Physical and Chemical Properties
Molecular Formula: C10H18O4
Molecular Weight: 202.25 g/mol
Appearance: White crystalline powder or flakes
Melting Point: 131–134°C
Boiling Point: Decomposes before boiling
Density: ~1.21 g/cm³
Solubility: Slightly soluble in water; soluble in ethanol, ether, and acetone
pH (Solution): Mildly acidic
Stability: Stable under normal storage conditions
Chemical formula: C10H18O4
Molar mass: 202.250 g•mol−1
Density: 1.209 g/cm3
Melting point: 131 to 134.5 °C (267.8 to 274.1 °F; 404.1 to 407.6 K)
Boiling point: 294.4 °C (561.9 °F; 567.5 K) at 100 mmHg
Solubility in water: 0.25 g/L
Acidity (pKa): 4.720, 5.450
Molecular Weight: 202.25 g/mol
XLogP3: 2.1
Hydrogen Bond Donor Count: 2
Hydrogen Bond Acceptor Count: 4
Rotatable Bond Count: 9
Exact Mass: 202.12050905 Da
Monoisotopic Mass: 202.12050905 Da
Topological Polar Surface Area: 74.6Ų
Heavy Atom Count: 14
Formal Charge: 0
Complexity: 157
Isotope Atom Count: 0
Defined Atom Stereocenter Count: 0
Undefined Atom Stereocenter Count: 0
Defined Bond Stereocenter Count: 0
Undefined Bond Stereocenter Count: 0
Covalently-Bonded Unit Count: 1
Compound Is Canonicalized: Yes
Molecular formula: C10H18O4
Average mass: 202.250
Monoisotopic mass: 202.120509
ChemSpider ID: 5004
Linear Formula: HO2C(CH2)8CO2H
CAS Number: 111-20-6
Molecular Weight: 202.25
Beilstein: 1210591
EC Number: 203-845-5
MDL number: MFCD00004440
UNSPSC Code: 12352100
PubChem Substance ID: 24857096
NACRES: NA.22
Chemical Formula: C10H18O4
Average Molecular Weight: 202.2475
Monoisotopic Molecular Weight: 202.120509064
IUPAC Name: decanedioic acid
Traditional Name: sebacic acid
CAS Registry Number: 111-20-6
SMILES: OC(=O)CCCCCCCCC(O)=O
InChI Identifier: InChI=1S/C10H18O4/c11-9(12)7-5-3-1-2-4-6-8-10(13)14/h1-8H2,(H,11,12)(H,13,14)
InChI Key: CXMXRPHRNRROMY-UHFFFAOYSA-N
CAS Number: 111-20-6.
EC / EINECS Number: 203-845-5.
IUPAC Name: decanedioic acid (also sometimes “1,10-decanedioic acid”).
Molecular formula: C₁₀H₁₈O₄.
Molar mass: ~ 202.25 g•mol⁻¹
Appearance: white flake or powdered crystalline solid.
Density: ~ 1.209 g•cm⁻³ (some datas list ~1.20 at 25 °C).
Melting point: ~ 131 - 134.5 °C.
Boiling / decomposition: example value ~ 294.4 °C at 100 mmHg.
Solubility: Slightly soluble in water (for example ~0.25 g/L at 25 °C listed on Wikipedia); more soluble in alcohols, esters and ketones; poorly soluble in hydrocarbons.
Log P / Partition behaviour: (less commonly listed) – given the long aliphatic chain and dicarboxylic acid nature, fairly hydrophobic segments but still dicarboxylates.
Other: Being a dicarboxylic acid, it can undergo typical acid reactions (esterification, salt formation) and is used as a monomer/intermediate in polymer chemistry
Chemical formula: C10H18O4
Molar mass: 202.250 g•mol−1
Density: 1.209 g/cm3
Melting point: 131 to 134.5 °C (267.8 to 274.1 °F; 404.1 to 407.6 K)
Boiling point: 294.4 °C (561.9 °F; 567.5 K) at 100 mmHg
Solubility in water: 0.25 g/L[1]
Acidity (pKa): 4.720, 5.450[1]
Molecular Formula / Molecular Weight: C10H18O4 = 202.25
Physical State (20 deg.C): Solid
Storage Temperature: Room Temperature (Recommended in a cool and dark place, <15°C)
CAS RN: 111-20-6
Reaxys Registry Number: 1210591
PubChem Substance ID: 87575652
SDBS (AIST Spectral DB): 2036
Merck Index (14): 8415
MDL Number: MFCD00004440
Chemical Formula: C10H18O4
Average Molecular Weight: 202.2475
Monoisotopic Molecular Weight: 202.120509064
IUPAC Name: decanedioic acid
Traditional Name: sebacic acid
CAS Registry Number: 111-20-6
SMILES: OC(=O)CCCCCCCCC(O)=O
InChI Identifier: InChI=1S/C10H18O4/c11-9(12)7-5-3-1-2-4-6-8-10(13)14/h1-8H2,(H,11,12)(H,13,14)
InChI Key: CXMXRPHRNRROMY-UHFFFAOYSA-N
Melting point: 133-137 °C (lit.)
Boiling point: 294.5 °C/100 mmHg (lit.)
density: 1.21
bulk density: 600-620kg/m3
vapor pressure: 1 mm Hg ( 183 °C)
refractive index: 1.422
Fp: 220 °C
storage temp.: Store below +30°C.
solubility: ethanol: 100 mg/mL
form: Powder or Granules
pka: 4.59, 5.59(at 25℃)
color: White to off-white
Odor: monoclinic prismatic tablets, wh. powd., fatty acid odor
Water Solubility: 1 g/L (20 ºC)
Merck: 14,8415
BRN: 1210591
Stability: Stable. Combustible. Incompatible with strong oxidizing agents, bases, reducing agents.
InChIKey: CXMXRPHRNRROMY-UHFFFAOYSA-N
LogP: 1.5 at 23℃
CAS DataBase Reference: 111-20-6(CAS DataBase Reference)
NIST Chemistry Reference: Decanedioic acid(111-20-6)
EPA Substance Registry System: Sebacic acid (111-20-6)
Linear Formula: HO2C(CH2)8CO2H
CAS Number: 111-20-6
Molecular Weight: 202.25
Beilstein: 1210591
EC Number: 203-845-5
MDL number: MFCD00004440
UNSPSC Code: 12352100
PubChem Substance ID: 24857096
NACRES: NA.22
Physical state: powder
Color: white
Odor: No data available
Melting point/freezing point:
Melting point/ range: 133 - 137 °C - lit.
Initial boiling point and boiling range: 294,5 °C at 133 hPa - lit.
Flammability (solid, gas): No data available
Upper/lower flammability or explosive limits: No data available
Flash point: Not applicable
Autoignition temperature: No data available
Decomposition temperature: No data available
pH: No data available
Viscosity:
Viscosity, kinematic: No data available
Viscosity, dynamic: No data available
Water solubility: 0,224 g/l at 20 °C - OECD Test Guideline 105
Partition coefficient: n-octanol/water: log Pow: 1,5 at 23 °C
Vapor pressure: 1 hPa at 183 °C
Density: 1,210 g/cm3 at 20 °C
Relative density: No data available
Relative vapour density: No data available
Particle characteristics: No data available
Explosive properties: No data available
Oxidizing properties: none
Other safety information: No data available
Appearance: White Granular
Content (%): 99.5 Min
Ash (%): 0.03 Max
Moisture (%): 0.3 Max
Colour (APHA): 15 Max
Melting Range (℃): 131 - 134.5
Appearance: white granular powder (est)
Assay: 95.00 to 100.00
Food Chemicals Codex Listed: No
Melting Point: 130.80 °C. @ 760.00 mm Hg
Boiling Point: 364.00 to 365.00 °C. @ 760.00 mm Hg
Boiling Point: 235.00 to 234.00 °C. @ 10.00 mm Hg
Flash Point: 389.00 °F. TCC ( 198.30 °C. ) (est)
logP (o/w): 1.706 (est)
Soluble in:
water, 1000 mg/L @ 20 °C (exp)
water, 1420 mg/L @ 25 °C (est)
FIRST AID MEASURES of SEBACID ACID (C10 DIBASIC ACID):
-Description of first-aid measures
*General advice:
Show this material safety data sheet to the doctor in attendance.
*If inhaled:
After inhalation:
Fresh air.
*In case of skin contact:
Take off immediately all contaminated clothing.
Rinse skin with
water/ shower.
*In case of eye contact:
After eye contact:
Rinse out with plenty of water.
Call in ophthalmologist.
Remove contact lenses.
*If swallowed:
After swallowing:
Immediately make victim drink water (two glasses at most).
Consult a physician.
-Indication of any immediate medical attention and special treatment needed.
No data available
ACCIDENTAL RELEASE MEASURES of SEBACID ACID (C10 DIBASIC ACID):
-Environmental precautions:
Do not let product enter drains.
-Methods and materials for containment and cleaning up:
Cover drains.
Collect, bind, and pump off spills.
Observe possible material restrictions.
Take up dry.
Dispose of properly.
Clean up affected area.
FIRE FIGHTING MEASURES of SEBACID ACID (C10 DIBASIC ACID):
-Extinguishing media:
*Suitable extinguishing media:
Carbon dioxide (CO2)
Foam
Dry powder
*Unsuitable extinguishing media:
For this substance/mixture no limitations of extinguishing agents are given.
-Further information:
Prevent fire extinguishing water from contaminating surface water or the ground water system.
EXPOSURE CONTROLS/PERSONAL PROTECTION of SEBACID ACID (C10 DIBASIC ACID):
-Control parameters:
--Ingredients with workplace control parameters:
-Exposure controls:
--Personal protective equipment:
*Eye/face protection:
Use equipment for eye protection.
Safety glasses
*Body Protection:
protective clothing
*Respiratory protection:
Recommended Filter type: Filter A
-Control of environmental exposure:
Do not let product enter drains.
HANDLING and STORAGE of SEBACID ACID (C10 DIBASIC ACID):
-Conditions for safe storage, including any incompatibilities:
*Storage conditions:
Tightly closed.
Dry.
STABILITY and REACTIVITY of SEBACID ACID (C10 DIBASIC ACID):
-Chemical stability:
The product is chemically stable under standard ambient conditions (room temperature) .
-Possibility of hazardous reactions:
No data available