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OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA)

 

 

Industrial cleaning and household washing: As a detergent, Oleic Acid Diethanolamide (Oleamide DEA) is widely used in industrial cleaning, household washing, textiles, chemical fibers, leather, personal care products, and other fields.
Metal processing fluids (oil): As a lubricant, rust inhibitor, and anti-wear agent, Oleic Acid Diethanolamide (Oleamide DEA) is commonly used in the field of metal processing fluids (oil).
Resin and fiber: As a lubricant and antistatic agent, Oleic Acid Diethanolamide (Oleamide DEA) is widely used in resin, fiber, and other fields.


CAS Number: 93-83-4
EC Number: 700-972-2
Molecular Formula: C22H43NO3

SYNONYMS:
(9Z)-N,N-Bis(2-hydroxyethyl)-9-octadecenamide, Diethanololeamide, N,N-Bis(2-hydroxyethyl)-(Z)-9-Octadecenamide, N,N-Bis(2-hydroxyethyl)oleamide, N,N-Diethanololeamide, ODEA, Oleamide diethanolamine, Oleic acid diethanolamide, Oleic diethanolamide, Oleylamide DEA, 9-Octadecenamide,N,N-bis(2-hydroxyethyl)-,(9Z)-, Oleamide,N,N-bis(2-hydroxyethyl)-, 9-Octadecenamide,N,N-bis(2-hydroxyethyl)-,(Z)-, (9Z)-N,N-Bis(2-hydroxyethyl)-9-octadecenamide, Oleic acid diethanolamide, Diethanololeamide, N,N-Diethanololeamide, Oleic diethanolamide, N,N-Bis(2-hydroxyethyl)oleamide, Comperlan OD, Lauridit OD, Oleamide DEA, Steinamid DO 280SE, Nitrene NO, Schercomid ODA, Emid 6545, Mackamide O, Clindrol 200O, Witcamide 511C, Emulsifier WHC, Stafoam DO, Marlamid D 1885, Clindrol 202O, Alrosol O, Amisol ODE, Varamide A 7, Oleylamide DEA, Pamsurf, Alkamide DO 280S, Stafoam DOS, Blaunon OL 05, Witcamide 511H, Ninol 90201, Romamid DT, Vicamid 825, Alkamide DO-280, Mackamide MO, Mackamide FTOA, Norfox F 221, Oleamide diethanolamine, Wallamid OD/E, ODEA, N,N-Bis(2-hydroxyethyl)-(Z)-9-Octadecenamide, Amisol ODHE, 8036-36-0, 39390-56-2, 73380-02-6, 95917-64-9, 118817-41-7, 137763-96-3, 1286271-90-6, 1648911-55-0
Oleamide DEA, N,N-Bis(2-hydroxyethyl)oleamide, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (9Z)-, Oleamide, N,N-bis(2-hydroxyethyl)-, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (Z)-, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (Z)-, Alkamide DO-280, Amidex O, Emid 6545, Incromide OD, Mackamide MO, Marlamid D 1885, Ninol 90201, Norfox F-221, Oleamide DEA, Oleic acid diethanolamide, Oleic acid diethanolamine, Rewomid DO 280 SE, Schercomid ODA, Varamide A-7, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (9Z)-, Alrosol O, Amisol ODE, Comperlan OD, Diethanololeamide, Emulsifier WHC, Lauridit OD, Mackamide O, N,N-Bis(2-hydroxyethyl)oleamide, N,N-Diethanololeamide, Nitrene NO, Oleamide, N,N-bis(2-hydroxyethyl)-, Stafoam DO, Steinamid DO 280SE, Witcamide 511C, (9Z)-N,N-Bis(2-hydroxyethyl)-9-octadecenamide, Schercomid SO-A, 8036-36-0, 118817-41-7, 137763-96-3, 39390-56-2, 73380-02-6, Alrosol O, Amisol ode, Mackamide O, Oleamide DEA, Oleic diethanolamide, N,N-Diethanololeamide, 93-83-4, Oleic acid diethanolamide, OLEIC DIETHANOLAMIDE, Oleamide DEA, Amisol ode, Diethanololeamide, Mackamide O, Comperlan OD, Emulsifier WHC, Schercomid ODA, Alrosol O, Lauridit OD, Nitrene NO, Stafoam DO, N,N-Bis(2-hydroxyethyl)oleamide, Witcamide 511C, Marlamid D 1885, Steinamid DO 280SE, (Z)-N,N-bis(2-hydroxyethyl)octadec-9-enamide, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (Z)-, EMID 6545, Oleic acid diethanolamine condensate, Oleamide, N,N-bis(2-hydroxyethyl)-, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (9Z)-, DTXSID8026563, 5C1I3E441Q, N,N-Bis(2-hydroxyethyl)-9-octadecenamide, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (9Z)-N,N-bis(2-hydroxyethyl)octadec-9-enamide, Clindrol 2000, Clindrol 2020, n,n-bis-(2-hydroxyethyl)oleamide, UNII-5C1I3E441Q, Incromide OD, Mackamide MO, Amidex O, Varamide A-7, EINECS 202-281-7, oleoyl diethanolamide, Alkamide DO-280, 80893-63-6, OLEYLAMIDE DEA, BRN 1985420, CALAMIDE O, Norfox F-221, PROTAMIDE OFO-LD, Oleic acid diethanolamine, Rewomid DO 280 SE, Ninol 90201, (Z)-N,N-Bis(2-hydroxyethyl)-9-octadecenamide, CHEMBL15712, Schercomid SO-A (Salt/Mix), Diethanolamine oleic acid amide, DTXCID606563, SCHEMBL1614760, N,N-diethanololeamide, AldrichCPR, Tox21_202528, CAS-93-83-4, NCGC00091445-01, NCGC00260077-01, NS00010086, G77685, (9Z)-N,N-Bis(2-hydroxyethyl)-9-octadecenamide #, Q27261806, 93-83-4, 202-281-7, 9-OCTADECENAMIDE, N,N-BIS(2-HYDROXYETHYL)-, CALAMIDE O, N,N-BIS(2-HYDROXYETHYL)-9-OCTADECENAMIDE, OLEAMIDE DEA, OLEIC ACID DIETHANOLAMIDE, OLEOYL DIETHANOLAMIDE, OLEYLAMIDE DEA, PROTAMIDE OFO-LD, N,N-Bis(2-hydroxyethyl)-9-octadecenamide, Alrosol O, Amisol ode, Clindrol 2000, Clindrol 2020, Comperlan OD, Diethanololeamide, EMID 6545, Emulsifier WHC, Lauridit OD, Mackamide O, N,N-Diethanololeamide, Nitrene NO, Oleamide, N,N-bis(2-hydroxyethyl)-, Oleic acid diethanolamide, Oleic acid diethanolamine condensate, Oleic diethanolamide, Schercomid ODA, Stafoam DO, Steinamid DO 280SE, Witcamide 511C, 9-OCTADECENAMIDE, N,N-BIS(2-HYDROXYETHYL)-CALAMIDE O, N,N-BIS(2-HYDROXYETHYL)-9-OCTADECENAMIDE, OLEAMIDE DEA, OLEIC ACID DIETHANOLAMIDE, OLEIC DIETHANOLAMIDE, OLEOYL DIETHANOLAMIDE, OLEYLAMIDE DEA, PROTAMIDE OFO-LD, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (Z)-, Alkamide DO-280, Amidex O, Emid 6545, Incromide OD, Mackamide MO, Marlamid D 1885, Ninol 90201, Norfox F-221, Oleamide DEA, Oleic acid diethanolamide, Oleic acid diethanolamine, Rewomid DO 280 SE, Schercomid ODA, Varamide A-7, 9-Octadecenamide, N,N-bis(2-hydroxyethyl)-, (9Z)-, Alrosol O, Amisol ODE, Comperlan OD, Diethanololeamide, Emulsifier WHC, Lauridit OD, Mackamide O, N,N-Bis(2-hydroxyethyl)oleamide, N,N-Diethanololeamide, Nitrene NO, Oleamide, N,N-bis(2-hydroxyethyl)-, Stafoam DO, Steinamid DO 280SE, Witcamide 511C

Oleic Acid Diethanolamide (Oleamide DEA) is slightly yellow to yellow-brown transparent liquid.
Oleic Acid Diethanolamide (Oleamide DEA) is dispersible in water; or slightly soluble in water. 
Oleic Acid Diethanolamide (Oleamide DEA) is soluble in ethanol.


Oleic Acid Diethanolamide (Oleamide DEA) is a useful research compound. 
Oleic Acid Diethanolamide (Oleamide DEA)'s molecular formula is C22H43NO3 and its molecular weight is 369.6 g/mol. 
The purity of Oleic Acid Diethanolamide (Oleamide DEA) is usually 95%.


The exact mass of Oleic Acid Diethanolamide (Oleamide DEA) is unknown and the complexity rating of the compound is unknown. 
Oleic Acid Diethanolamide (Oleamide DEA) is a newly-developed type of nonionic surfactant. 
Oleic Acid Diethanolamide (Oleamide DEA) boasts exceptional performance in a range of applications. 


With its excellent decontamination, emulsification, foaming, dispersing, solubilizing, antistatic, lubricating, rust prevention, corrosion prevention, and wear resistance properties, Oleic Acid Diethanolamide (Oleamide DEA) offers excellent performance in various fields. 
Furthermore, its exceptional calcium and magnesium dispersion ability enables Oleic Acid Diethanolamide (Oleamide DEA) to effectively eliminate water hardness in cleaning formulations.


Oleic Acid Diethanolamide (Oleamide DEA) is a nonionic surfactant commonly used as a detergency booster, anticorrosive and skin-protective agent in industrial degreasing and cleaning agents, such as engine cleaners. 
Furthermore, Oleic Acid Diethanolamide (Oleamide DEA) serves as an agent providing for enhanced scourability and rinsability of water-free oils and hydraulic fluids. 


Oleic Acid Diethanolamide (Oleamide DEA) can also form a component of aqueous emulsions for metal cutting and non-corrosive working fluids.
Oleic Acid Diethanolamide (Oleamide DEA) has excellent decontamination, emulsification, foaming, foam stabilization, dispersion, solubilization, antistatic, lubrication, rust inhibition, and wear resistance


Oleic Acid Diethanolamide (Oleamide DEA) is also an ingredient in fabric conditioners and personal care products such as shampoos, conditioners or water-free soaps. 
Oleic Acid Diethanolamide (Oleamide DEA)'s antistatic, anticorrosive and emulsifying properties are made use of in coatings, rubber and oil industries as well as emulsion polymerization.


Oleic Acid Diethanolamide (Oleamide DEA) is obtained by reaction of oleic acid with an excess of diethanolamine
Oleic Acid Diethanolamide (Oleamide DEA) is olassified as nonionic surfactant. 


Oleic Acid Diethanolamide (Oleamide DEA) is amber liquid at room temperature.
Oleic Acid Diethanolamide (Oleamide DEA) is a nonionic surfactant, meaning it has a molecule with both water-loving (hydrophilic) and water-hating (hydrophobic) parts.


Oleic Acid Diethanolamide (Oleamide DEA) is derived from oleic acid, a monounsaturated fatty acid found in plant and animal fats, and diethanolamine (DEA), an organic compound. 
Oleic Acid Diethanolamide (Oleamide DEA) plays a significant role in various industrial applications due to its surface-active properties.

USES and APPLICATIONS of OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Besides the use in cosmetics, Oleic Acid Diethanolamide (Oleamide DEA) also has technical applications. 
Oleic Acid Diethanolamide (Oleamide DEA)'s properties allow the compound to be used in metalworking products, textiles, detergents, processing fluids, degreasing preparations. 


Oleic Acid Diethanolamide (Oleamide DEA) serves as an agent that improves washability and rinsing of water-free oils, which improves the effectiveness of products. 
Oleic Acid Diethanolamide (Oleamide DEA) can also be used as a component of aqueous emulsions for non-corrosive working fluids. 


Oleic Acid Diethanolamide (Oleamide DEA) is also used in the preparation of products acting as metalworking coolants and polishing agents. 
The antistatic, anticorrosive and emulsifying properties of Oleic Acid Diethanolamide (Oleamide DEA) are used in the rubber industry and in emulsion polymerization. 


As a concentrating component, Oleic Acid Diethanolamide (Oleamide DEA) is also used in paints.
Oleic Acid Diethanolamide (Oleamide DEA) is a mixture of ethanolamides of oleic acid.
Oleic Acid Diethanolamide (Oleamide DEA) is an oleic diethanolamide obtained by reaction of oleic acid with an excess of diethanolamine. 


Industrial cleaning and household washing: As a detergent, Oleic Acid Diethanolamide (Oleamide DEA) is widely used in industrial cleaning, household washing, textiles, chemical fibers, leather, personal care products, and other fields.
Metal processing fluids (oil): As a lubricant, rust inhibitor, and anti-wear agent, Oleic Acid Diethanolamide (Oleamide DEA) is commonly used in the field of metal processing fluids (oil).


Resin and fiber: As a lubricant and antistatic agent, Oleic Acid Diethanolamide (Oleamide DEA) is widely used in resin, fiber, and other fields.
Personal care products: As a foam stabilizer, thickening agent, and antistatic agent, Oleic Acid Diethanolamide (Oleamide DEA) is used in the field of personal care products.


Thickening agent, emulsifier, foaming agent: Oleic Acid Diethanolamide (Oleamide DEA) can also serve as a thickening agent, emulsifier, foaming agent, and foaming agent application.
Application areas of Oleic Acid Diethanolamide (Oleamide DEA): Dyes and pigments, HI&I cleaning, Emulsion polymerization, Metalworking, Paints coatings, Personal care, Industrial auxiliaries, Construction chemicals, and Oil field


Oleic Acid Diethanolamide (Oleamide DEA) is used with excellent decontamination, emulsification, foaming, foam stabilization, dispersion, solubilization, antistatic, lubrication, rust inhibition, anti-wear ability.
Oleic Acid Diethanolamide (Oleamide DEA) is a nonionic surfactant derived from oleic acid and diethanolamine. 


Oleic Acid Diethanolamide (Oleamide DEA) is widely used as an emulsifier, stabilizer, and surfactant in various industries such as personal care, textiles, paints, and more.
Industrial cleaning field: Oleic Acid Diethanolamide (Oleamide DEA) has excellent decontamination, emulsification, foaming, foam stabilization, dispersion, solubilization, antistatic, lubrication, anti-rust and anti-wear properties.


Household washing field: Oleic Acid Diethanolamide (Oleamide DEA) is suitable for detergents in textile, chemical fiber, leather, personal care products and other fields.
Metal working fluid (oil) field: Oleic Acid Diethanolamide (Oleamide DEA) can be used as lubricant, anti-rust agent, and anti-wear agent.


Oleic Acid Diethanolamide (Oleamide DEA) is used Resin, fiber and other fields: can be used as lubricant and antistatic agent.
Other applications: Oleic Acid Diethanolamide (Oleamide DEA) can be used as thickener, emulsifier, foaming agent, foam stabilizer, etc.


Technical uses: Oleic Acid Diethanolamide (Oleamide DEA) is used Cutting fluids, degreasers, manufacturer of hard surface cleaners, dilutable, hard surface cleaners, metalworking cleaners, textile
Cosmetic uses: Oleic Acid Diethanolamide (Oleamide DEA) is used Antistatic, surfactant-foam boosting, viscosity controlling.

APPLICATIONS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA) IN COSMETIC PRODUCTS:
In cosmetics, Oleic Acid Diethanolamide (Oleamide DEA) has several functions. 
Oleic Acid Diethanolamide (Oleamide DEA) is an excellent viscosity regulator, antistatic and foaming agent. 

The use of Oleic Acid Diethanolamide (Oleamide DEA) in the composition of shampoos reduces the tendency of hair to pick up statics, because the substance easily binds to the negatively charged surface of the hair. 

The use of Oleic Acid Diethanolamide (Oleamide DEA) in all kinds of soaps, liquids and gels improves the quality and stability of the resulting foam in contact with anionic substances. 
Commonly, Oleic Acid Diethanolamide (Oleamide DEA) is considered a factor that perfectly nourishes and conditions the hair. 

Thus, the addition of Oleic Acid Diethanolamide (Oleamide DEA) to shampoos facilitates combing and makes the hair shine. 
Due to its concentrating properties, Oleic Acid Diethanolamide (Oleamide DEA) is also used in moisturising creams and colouring preparations.

Oleic Acid Diethanolamide (Oleamide DEA) finds use in a variety of industrial cleaners where it acts as a viscosity builder, for foam boosting and foam stabilizing, as dispersing agent, emulsifier and corrosion inhibitor. 
Oleic Acid Diethanolamide (Oleamide DEA) improves the detergency of other surfactants.

MOLECULAR STRUCTURE ANALYSIS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
The Oleic Acid Diethanolamide (Oleamide DEA) molecule consists of a long hydrocarbon chain (from oleic acid) attached to a diethanolamine group. 
The hydrocarbon chain is the hydrophobic part, while the diethanolamine group contains an amide bond (C-O-N) and hydroxyl groups (OH) that contribute to the hydrophilic character. 
This combination allows Oleic Acid Diethanolamide (Oleamide DEA) to interact with both water and oil, making it a valuable emulsifier and dispersant.

CHEMICAL REACTIONS ANALYSIS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Synthesis
Oleic Acid Diethanolamide (Oleamide DEA) is typically synthesized by reacting oleic acid with diethanolamine in the presence of a catalyst, often sodium hydroxide (NaOH). 
The reaction can be represented by the following balanced chemical equation:
C₁₇H₃₃COOH (oleic acid) + 2 NH₂(CH₂CH₂OH)₂ (diethanolamine) → C₁₇H₃₃CO-N(CH₂CH₂OH)₂ (OLEA) + H₂O (water)

DECOMPOSITION OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Under extreme heat or strong acidic/basic conditions, Oleic Acid Diethanolamide (Oleamide DEA) can decompose into its constituent parts, oleic acid and diethanolamine. 
The specific breakdown products and reaction rates depend on the decomposition conditions.

PHYSICAL AND CHEMICAL PROPERTIES OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Appearance: 
Oleic Acid Diethanolamide (Oleamide DEA) is light yellow to amber viscous liquid.

Melting Point: 
Not applicable, as Oleic Acid Diethanolamide (Oleamide DEA) is a liquid at room temperature.

Boiling Point: 
Oleic Acid Diethanolamide (Oleamide DEA) decomposes before boiling.

Solubility: 
Oleic Acid Diethanolamide (Oleamide DEA) is soluble in water and various organic solvents like ethanol and isopropanol.

Stability: 
Oleic Acid Diethanolamide (Oleamide DEA) is stable under normal storage conditions. 
Oleic Acid Diethanolamide (Oleamide DEA) can hydrolyze (react with water) under strong acidic or basic conditions 

FUNCTIONS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Corrosion Inhibitor, Dispersant, Dispersant, Emulsifier, Foam Booster, Foam Stabilizer, Foaming Agent, Intermediate, Rheology Modifier, Superfatting Agent, Surfactant, Surfactant (Nonionic), Viscosity Modifier

CHEMICAL FAMILY OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
*Alkanolamides, 
*Amides, 
*Non-Ionics


WHY IS OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA) USED?
Cocamide DEA, Lauramide DEA, Linoleamide DEA, and Oleic Acid Diethanolamide (Oleamide DEA) increase foaming capacity and/or stabilize foam. 
They are also used to thicken the aqueous (water) portion of cosmetics and personal care products.

SCIENTIFIC FACTS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Cocamide DEA, Lauramide DEA, Linoleamide DEA and Oleic Acid Diethanolamide (Oleamide DEA) are produced from naturally occurring fatty acids. 
Cocamide DEA is derived from the fatty acids of coconut oil, Lauramide DEA is derived from lauric acid, Linoleamide DEA is derived from linoleic acid, and Oleic Acid Diethanolamide (Oleamide DEA) is derived from oleic acid.

CHARACTERISTICS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Oleic Acid Diethanolamide (Oleamide DEA) is excellent cleansing, emulsifying, dispersing, solubilizing, lubricating, foam stabilizing, anticorrosive abilities.

From the chemical perspective, amides are products of the transformation of carbonic acids (mainly fatty acids) or other acids with compounds containing nitrogen in their structure (e.g. alkyl amines, amino acids).
Oleic Acid Diethanolamide (Oleamide DEA) is mainly a synthetic substance. 

From a chemical point of view, Oleic Acid Diethanolamide (Oleamide DEA) is a product of a reaction between oleic acid (C18H34O2) with an excess of diethanolamine (NH(CH2CH2OH)2). 
The reaction product of Oleic Acid Diethanolamide (Oleamide DEA) is an amber liquid at room temperature. 

Oleic Acid Diethanolamide (Oleamide DEA) is moderately lipophilic and slightly soluble in water. 
Oleic Acid Diethanolamide (Oleamide DEA) is very stable under normal conditions. 

Oleic Acid Diethanolamide (Oleamide DEA) is an unambiguous numerical term assigned to a chemical substance by a US organization, the Chemical Abstracts Service (CAS).  
Oleic Acid Diethanolamide (Oleamide DEA) is biodegradable.

SCIENTIFIC RESEARCH APPLICATIONS OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
*Antirust Performance and Synthesis
Oleic Acid Diethanolamide (Oleamide DEA), synthesized from oleic acid, diethanolamine, and phosphorus pentoxide, displays excellent surface-active properties. 
Its antirust performance has been researched, showing promise in industrial applications.


*Use in Nonionic Emulsifiers
Oleic Acid Diethanolamide (Oleamide DEA) is utilized in the synthesis of nonionic emulsifiers, commonly used in cosmetics and as corrosion inhibitors. 
Research involving lipase-catalyzed amidation of fatty acids with diethanolamine underlines its industrial relevance.


*Optimization in Solvent-Free Systems
Studies have focused on optimizing the synthesis of Oleic Acid Diethanolamide (Oleamide DEA) in solvent-free systems, employing immobile lipase as a biocatalyst. 
This method emphasizes the importance of various factors like temperature, reaction time, and enzyme amount.


*Development of Surfactants
Research into novel aryl Oleic Acid Diethanolamide (Oleamide DEA) surfactants explores their potential in reducing water surface tension, which has significant implications in industrial processes.


*Nutritional Science Perspective
Oleic Acid Diethanolamide (Oleamide DEA) has been studied for its role in lipid metabolism and energy intake. 
It is synthesized from dietary oleic acid, indicating its potential in weight management and obesity treatment.


*Enhanced Oil Recovery Processes
Partially sulfonated polystyrene nanoparticles used as nanocarriers for Oleic Acid Diethanolamide (Oleamide DEA) surfactant have been evaluated for their efficiency in oil recovery processes, reducing surfactant losses and increasing oil recovery.


*Biodegradability and Lubricity in Lubricating Oil
The use of Oleic Acid Diethanolamide (Oleamide DEA) borates as additives in mineral lubricating oil has been studied, showing enhanced biodegradability and lubricity. 
This research is crucial for the development of environmentally friendly lubricants.

MECHANISM OF ACTION OF OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
*Target of Action
Oleic Acid Diethanolamide (Oleamide DEA) is a non-ionic surfactant It’s structurally similar compound, ethanolamine oleate, has been reported to interact with calcium ions and coagulation factor xii .


*Mode of Action
The oleic acid component of ethanolamine oleate, a compound similar to Oleic Acid Diethanolamide (Oleamide DEA), is responsible for the inflammatory response and may also activate coagulation in vivo by release of tissue factor and activation of Hageman factor 


*Biochemical Pathways
A related compound, Oleic Acid Diethanolamide (Oleamide DEA), has been reported to modulate feeding, body weight, and lipid metabolism by binding with high affinity to the ligand-activated transcription factor, peroxisome proliferator-activated receptor-alpha (ppar-α) .


*Action Environment
Oleic Acid Diethanolamide (Oleamide DEA) is commonly used as a detergency booster, anticorrosive, and skin-protective agent in industrial degreasing and cleaning agents, such as engine cleaners . 
Oleic Acid Diethanolamide (Oleamide DEA) has also been used as a surfactant nanocarrier for enhanced oil recovery processes . 
The action, efficacy, and stability of Oleic Acid Diethanolamide (Oleamide DEA) can be influenced by environmental factors such as temperature, pH, and the presence of other substances in the environment.

WHAT IS IT?
Cocamide DEA, Lauramide DEA, Linoleamide DEA and Oleic Acid Diethanolamide (Oleamide DEA) are viscous liquids or waxy solids. 
These ingredients are fatty acids derivatives of diethanolamine (DEA). 
In cosmetics and personal care products, these ingredients are used in the formulation of shampoos, hair dyes, bath products, and lotions.

PHYSICAL and CHEMICAL PROPERTIES of OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
Molecular Weight: 369.6 g/mol
XLogP3-AA: 5.8
Hydrogen Bond Donor Count: 2
Hydrogen Bond Acceptor Count: 3
Rotatable Bond Count: 19
Exact Mass: 369.32429423 g/mol
Monoisotopic Mass: 369.32429423 g/mol
Topological Polar Surface Area: 60.8 Ų
Heavy Atom Count: 26
Formal Charge: 0

Complexity: 325
Isotope Atom Count: 0
Defined Atom Stereocenter Count: 0
Undefined Atom Stereocenter Count: 0
Defined Bond Stereocenter Count: 1
Undefined Bond Stereocenter Count: 0
Covalently-Bonded Unit Count: 1
Compound Is Canonicalized: Yes
Appearance at 20°C: amber viscous liquid
Density at 20°C, g/cm³: 0.97
Dry Matter, % wt., min.: 90.0

pH, 1% Aqueous Solution: 8.0 - 11.0
Melting Point/Freezing Point: 49-54°C
Total Amine Value (mg KOH/g): ≤45
Acid Value (mg KOH/g): ≤15
pH Value (1% Aqueous Solution): 8-11
Amide Content (%): ≥96
Appearance: White to light yellow flake solid
Colour and Lustre (GARDNER): ≤4
IUPAC/Chemical Name: N,N-bis(2-hydroxyethyl)oleamide
InChi Key: LPMBTLLQQJBUOO-KTKRTIGZSA-N

InChi Code: InChI=1S/C22H43NO3/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-22(26)23(18-20-24)19-21-25/h9-10,24-25H,2-8,11-21H2,1H3/b10-9-
SMILES Code: CCCCCCCC/C=CCCCCCCCC(N(CCO)CCO)=O
Appearance: Solid powder
Purity: >98% (or refer to the Certificate of Analysis)
Shipping Condition: Shipped under ambient temperature as non-hazardous chemical. 
This product is stable enough for a few weeks during ordinary shipping and time spent in Customs.
Storage Condition: Dry, dark and at 0 - 4°C for short term (days to weeks) or -20°C for long term (months to years).
Solubility: Soluble in DMSO
Shelf Life: >3 years if stored properly
Molecular Weight: 369.58200

Exact Mass: 369.58
EC Number: 202-281-7
HS Code: 2924199090
Characteristics
PSA: 60.77000
XLogP3: 4.83710
Appearance: Liquid; Other Solid
Density: 0.96 g/cm³
Melting Point: -18ºC
Boiling Point: 150ºC
Flash Point: 94ºC
Refractive Index: 1.488
CASRN: 93-83-4

EINECS: 202-281-7
Molecular Formula & Molecular Weight
Molecular Formula: C22H43NO3; C22H43N1O3
Molecular Weight: 369.58
Density: 1.0 ± 0.1 g/cm³
Boiling Point: 525.6 ± 45.0 °C at 760 mmHg
Molecular Formula: C22H43NO3
Molecular Weight: 369.582
Flash Point: 271.7 ± 28.7 °C
Exact Mass: 369.324280
LogP: 6.61
Vapor Pressure: 0.0 ± 3.1 mmHg at 25°C
Index of Refraction: 1.488

FIRST AID MEASURES of OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-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 OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-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 OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-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 OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-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 OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-Conditions for safe storage, including any incompatibilities:
*Storage conditions:
Tightly closed. 
Dry.

STABILITY and REACTIVITY of OLEIC ACID DIETHANOLAMIDE (OLEAMIDE DEA):
-Chemical stability:
The product is chemically stable under standard ambient conditions (room temperature) .
-Possibility of hazardous reactions:
No data available


 

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