Diglycerol, brake oil raw material, emulsifier and Defoamer.
Diglycerol, food emulsifier, paint and detergent additives, anti-fogging agent, detergent containing solvent, shoe polish, wax and other anti-evaporation agent.
Diglycerol, emulsifier, additive to detergents.
CAS Number: 59113-36-9
Molecular Formula: C6H14O5
Molecular Weight: 166.17
EINECS Number: 261-605-5
Synonyms: Diglycerol, 627-82-7, Diglycerine, alpha,alpha'-Diglycerol, 3-(2,3-dihydroxypropoxy)propane-1,2-diol, Diglycerin, Propanediol, oxybis-, 1,2-Propanediol, 3,3'-oxybis-, 59113-36-9, 3,3'-Oxybis(propane-1,2-diol), .alpha.,.alpha.'-Diglycerol, UC0A740LR3, 3,3'-oxydipropane-1,2-diol, 4-Oxaheptane-1,2,6,7-tetrol, 3,3'-Oxydi(propane-1,2-diol), NSC-8689, MFCD00049316, glyceryl ether, UNII-UC0A740LR3, diglyceryl ether, 3,3'-Oxydi(propylene glycol), 3,2-propanediol, NSC8689, 1,2-Propanediol, 3,3'-oxydi-, Oxydi(propanediol), 3,3'-Oxydi-1,2-propanediol, 4-Oxaheptane-1,2,6,7-tetrol, Bis(2,3-dihydroxypropyl) Ether, NSC 8689, EINECS 211-013-8, OXYBISPROPANEDIOL, Tetrahydroxydipropyl Ether, 1, 3,3'-oxybis-, 1, 3,3'-oxydi-, Diglycerol (isomers mixture), SCHEMBL30754, 4-Oxaheptane-1,6,7-tetrol, 3-glyceryloxypropane-1,2-diol, 3,3'-Oxydi-1,2-propanediol, UNII-3YC120743U, GPLRAVKSCUXZTP-UHFFFAOYSA-, DTXSID90872273, CHEBI:140430, DIGLYCERIN, ALPHA,ALPHA'-, bis-(2,3-dihydroxy-propyl)-ether, NSC 8689, EINECS 261-605-5, .ALPHA.,.ALPHA.'-DIGLYCERIN, AKOS015915864, 3YC120743U, DIGLYCERIN, .ALPHA.,.ALPHA.'-, SY053494, DB-053322, CS-0197339, NS00009635, T0119, EC 261-605-5, F71162, .ALPHA.,.ALPHA.'-DIGLYCEROL, (+/-)-, EN300-7701666, Q27291013, InChI=1/C6H14O5/c7-1-5(9)3-11-4-6(10)2-8/h5-10H,1-4H2, 51493-70-0, 3-(2,3-dihydroxypropoxy)propane-1,2-diol,3-glyceryloxypropane-1,2-diol,Diglycerin S,Glycerol dimer,Great Oil DI 1,K-COL-II,Resassol DN,Diglycerin 801
Diglycerols include alkaline-based catalysts such as sodium hydroxide and potassium hydroxide.
The reaction is typically conducted at elevated temperatures ranging from 200°C to 250°C under reduced pressure to facilitate the removal of water formed during the reaction.
In industrial settings, Diglycerol is produced through a similar etherification process.
The reaction is often carried out in a continuous flow reactor to ensure consistent product quality and yield.
The use of microwave irradiation has also been explored to enhance the reaction rate and selectivity towards this compound.
The final Diglycerol is purified through distillation to remove unreacted glycerol and other by-products.
Diglycerol is used as a moisturizer and humectant in skincare products due to its ability to attract and retain moisture.
Employed as a food additive, particularly as a sweetener and stabilizer.
Diglycerol acts as a solvent and excipient in various formulations.
Diglycerol is utilized in the manufacture of plastics, resins, and as a surfactant in detergents.
Generally recognized as safe when used in appropriate amounts; however, excessive ingestion can lead to gastrointestinal discomfort.
May cause mild irritation; protective measures should be taken during handling.
Diglycerols of two glycerol units connected by an ether bond.
Diglycerol has two hydroxyl (-OH) groups, making it a polyol. The structure can be represented as follows:
Diglycerol can be synthesized through various methods, including:
Diglycerol Transesterification: Reaction of glycerol with fatty acids or triglycerides.
Diglycerol can undergo dehydration in the presence of acid catalysts to form diglycerol.
As a humectant, it helps retain moisture in skin formulations, making it popular in creams, lotions, and serums.
Provides a smooth and soft feel to products, enhancing their sensory attributes.
Diglycerol is used to adjust the viscosity of formulations.
Acts as a low-calorie sweetener and is used in sugar-free products.
Helps improve the texture and consistency of food products.
Diglycerol is used in drug formulations to dissolve active ingredients.
Acts as a filler or binder in tablets and capsules.
Diglycerol enhances the palatability of oral liquid formulations.
Diglycerol employed in detergents and cleaning products to enhance their cleaning efficiency.
Used in plastics and polymers to improve flexibility and workability.
Diglycerol is soluble in water and is a colorless to light yellow liquid, which can be used as an intermediate in organic synthesis.
Diglycerol is mainly used for the preparation of fatty acid esters, used as emulsifiers and defoamers, etc.
Diglycerol's pharmacological properties have sparked significant interest among researchers seeking innovative therapeutic solutions.
Diglycerol molecule contains 4 hydroxyl groups, is a kind of esterified, etherification and other reaction possibilities of organic synthesis intermediates.
Mainly used for the preparation of fatty acid esters, used as emulsifiers and Defoamers.
Ethylene oxide adduct of diglycerol: demulsifier, antistatic agent, release agent.
Diglycerol: raw material of polyurethane, mold release agent. Triallyl ether of diglycerol: softener for synthetic rubber.
Diglycerol, also known as diglycerin, is a polyol compound consisting of two glycerol molecules linked by an ether bond.
It is a colorless, odorless, and viscous liquid that is soluble in water and has hygroscopic properties.
Diglycerol is used in various industries, including cosmetics, food, pharmaceuticals, and polymers, due to its unique physicochemical properties.
Diglycerol, also known as diglycerin or 1,2-diglycerol, is a diol (a type of alcohol) composed of two glycerol molecules linked together by an ether bond.
Its chemical formula is C6H14O5 , and its CAS number is 627-82-7.
Diglycerol can be synthesized through the etherification of glycerol.
This process involves the catalytic condensation of two glycerol molecules.
The reaction can be carried out using both homogeneous and heterogeneous catalysts.
The main derivatives of diglycerols and diglyceryl tetramethyl acrylate: monomers of adhesives.
Diglycerol: antifoaming agent, lubricating oil rust inhibitor, non-drop polyvinyl chloride packaging material, food, margarine and butter emulsifier.
Diglycerol, a bioactive compound prominent in the biomedical field, serves as a crucial element in numerous pharmaceutical formulations aimed at combating prevalent ailments like diabetes and cancer.
Melting point: 96-97 °C
Boiling point: 173 °C(Press: 14 Torr)
Density: 1.2774 g/cm3
vapor pressure: 0Pa at 20℃
Viscosity: 17474mm2/s
Water Solubility: 1000g/L at 20℃
LogP: -2.5 at 20℃
Diglycerol is a simple triol, while diglycerol is a diol.
Diglycerol is more viscous and has a higher boiling point than glycerol.
Diglycerol is widely used in food and pharmaceutical applications, while diglycerol's applications extend into more specialized fields like cosmetics and surfactants.
Diglycerol, propylene glycol is a synthetic liquid substance with moisture-retaining properties.
However, Diglycerol is typically used in food, pharmaceuticals, and cosmetics, while diglycerol is preferred for specific emulsification and moisture retention roles.
Diglycerol is a sugar alcohol with humectant properties.
It is often used as a sweetener and humectant in food products.
Diglycerol offers more emulsifying properties compared to sorbitol, making it better suited for certain cosmetic formulations.
Research is exploring the use of Diglycerol as a feedstock for biofuel production.
Its renewable nature and biodegradability make it a potential candidate for sustainable energy solutions.
Diglycerol has been investigated for its role in synthesizing nanoparticles, particularly in drug delivery systems and nanomedicine.
As food scientists explore health benefits, Diglycerol's role as a low-calorie sweetener and texturizer in functional foods is gaining attention.
The potential of diglycerol in biopolymer formulations is being studied for creating biodegradable and sustainable packaging materials.
Ongoing research focuses on optimizing diglycerol’s properties for various formulations, including its role in improving skin penetration in topical products and enhancing stability in emulsions.
Investigations are being conducted to evaluate the safety and efficacy of diglycerol in pharmaceutical applications, particularly for drug delivery systems.
Diglycerol features two glycerol units (1,2,3-propanetriol) connected by an ether bond.
Its hydroxyl groups (-OH) are responsible for its solubility in water and its ability to form hydrogen bonds, contributing to its hydrophilic nature.
Investigated for use in drug delivery systems due to its biocompatibility.
Diglycerol explored as a component in hydrogels for tissue scaffolding.
Generally recognized as safe (GRAS) when used appropriately in food and cosmetic applications.
Diglycerol large doses may cause gastrointestinal issues, such as diarrhea.
Mild irritant; contact with skin or eyes should be avoided. Use gloves and safety goggles when handling.
Avoid inhalation of vapors or aerosols, especially in poorly ventilated areas.
Diglycerol is approved for use in food and cosmetics.
Diglycerol is biodegradable and does not persist in the environment.
However, Diglycerol should still be managed to avoid pollution.
Generally safe for topical application.
However, some individuals may experience mild irritation or allergic reactions.
Low doses are typically safe, but excessive consumption may lead to gastrointestinal discomfort, including bloating and diarrhea.
Inhalation of diglycerol vapors or aerosols may cause respiratory irritation.
Diglycerol is advisable to handle it in a well-ventilated environment.
Uses Of Diglycerol:
Diglycerol is used in detergents, cleaning products, and industrial cleaners to enhance their cleaning efficiency.
Improves flexibility and workability in plastic and polymer formulations.
Acts as a lubricant in various mechanical and industrial applications.
Investigated for use in controlled drug delivery systems due to its biocompatibility.
Diglycerol is used in the formulation of hydrogels for tissue scaffolding and regenerative medicine.
Research is being conducted to explore diglycerol as a feedstock for biofuel production.
Diglycerol utilized in the synthesis of nanoparticles for applications in nanomedicine and targeted drug delivery.
Studied for potential use in biodegradable and sustainable packaging materials.
Potentially used in formulations to improve nutrient uptake and soil moisture retention.
Found in lotions and creams to enhance hydration.
Brands may include diglycerol in formulations marketed for dry skin.
Helps maintain skin moisture levels and improves skin elasticity.
Diglycerol is used in balms and ointments to soften and soothe the skin.
Provides a barrier to prevent moisture loss and improves overall skin texture.
Included in shampoos and conditioners to enhance viscosity and application ease.
Diglycerol helps stabilize emulsions, improving product shelf life.
In hair masks and leave-in conditioners to provide moisture and shine.
Enhances hair manageability and reduces frizz.
Diglycerol is used in sugar-free candies, baked goods, and beverages.
Low-calorie option for consumers seeking healthier alternatives.
In emulsified products like salad dressings and mayonnaise to maintain consistency.
Diglycerol improves texture and prevents separation of ingredients.
Incorporated into bread and pastries to prolong freshness.
Diglycerol extends shelf life by retaining moisture.
Diglycerol is used in sauces and dressings to enhance flavor without adding calories.
Provides a rich mouthfeel and improves palatability.
Diglycerol is used in injectable formulations for solubilizing poorly soluble drugs.
Diglycerol acts as a binder in tablets, providing structural integrity during manufacturing.
Ensures consistent dosing and improves tablet stability.
Found in cough syrups and liquid formulations to improve taste and consistency.
Makes medications more palatable for patients, especially children.
Diglycerol is used in laundry detergents and surface cleaners to break down grease and stains.
Enhances cleaning performance and lowers surface tension, allowing for better spreading.
Incorporated into PVC and other polymers to improve flexibility.
Reduces brittleness in plastic products, making them more durable.
Diglycerol is used in machinery and automotive applications.
Reduces friction and wear, prolonging the life of components.
Investigated for use in hydrogels for controlled release of therapeutic agents.
Offers sustained release profiles and improved patient compliance.
Formulated into scaffolds for cell culture and tissue regeneration.
Diglycerol provides a supportive environment for cell growth and differentiation.
Exploring the use of diglycerol in the production of biodiesel and as a renewable energy source.
Contributes to sustainability efforts by reducing reliance on fossil fuels.
Diglycerol is used as a stabilizing agent in the synthesis of nanoparticles for drug delivery.
Enhances stability and dispersibility of nanoparticles, improving their therapeutic efficacy.
Developing biodegradable packaging materials that incorporate diglycerol.
Offers a more environmentally friendly alternative to traditional plastic packaging.
Potential use in slow-release fertilizers to improve nutrient uptake.
Diglycerol enhances soil moisture retention and nutrient availability for crops.
Diglycerol has excellent moisturizing properties and is a good water-based solvent.
Diglycerol can also be used as a moisturizing and moisturizing agent, softener, antifreeze agent, and can also be used in biodegradable plastics.
Mainly used in the preparation of fatty acid esters, used as emulsifiers and defoaming agents.
Diglycerol also can be used as emulsifier and dispersant in cosmetics, instead of solvents and pearlescent agents.
Diglycerol is used for the preparation of fatty acid esters, as emulsifiers and Defoamers, and instead of glycerol for printing
Diglycerol can increase the water content in the top layers of the skin.
Formulators may select this ingredient for its humectant properties, and also when needing a skin-conditioning agent or a solvent.
Diglycerol is synthetically manufactured.
Diglycerol is used as a humectant to retain moisture in skin creams, lotions, and serums.
Diglycerol provides a smooth, soft feel, improving the texture of creams and lotions.
Adjusts the viscosity of formulations, enhancing product stability.
Diglycerol is used in shampoos and conditioners to improve moisture retention and manageability.
Acts as a low-calorie sweetener in food products, particularly sugar-free or reduced-calorie items.
Improves texture and consistency in various food products, such as ice creams and sauces.
Helps retain moisture in baked goods, preventing them from drying out.
Diglycerol is used to dissolve active pharmaceutical ingredients (APIs) in liquid formulations.
Acts as a binder or filler in tablets and capsules.
Diglycerol enhances the palatability and stability of liquid medicines.
Safety Profile Of Diglycerol:
Protective eyewear should be worn when handling the substance to prevent splashes.
Although diglycerol is generally recognized as safe (GRAS) when used in food and cosmetics, excessive consumption can lead to gastrointestinal discomfort, including diarrhea and bloating.
Adhere to recommended usage levels in food and pharmaceutical applications.
Inhalation of vapors or aerosols may irritate the respiratory tract, potentially causing coughing or throat irritation.
Diglycerol ensure adequate ventilation in work areas, especially during industrial processes.
Diglycerol prolonged or repeated contact with diglycerol may cause mild irritation to the skin in sensitive individuals.
Diglycerol is advisable to use protective gloves when handling diglycerol, especially in concentrated forms.
Direct contact with the eyes may result in irritation, redness, or discomfort.