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Myristic acid diethanolamide is a chemical compound derived from myristic acid, a saturated fatty acid found in coconut oil and palm kernel oil. It is primarily used as a surfactant and emulsifying agent in various personal care and household products. Known for its excellent foaming and cleansing properties, it is a common ingredient in shampoos, body washes, and liquid soaps. Myristic acid diethanolamide also has industrial applications as a lubricant, corrosion inhibitor, and dispersing agent in agricultural products. With low toxicity, it is considered safe for use in consumer products when formulated within regulated limits.

7545-23-5

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7545-23-5 Usage

Uses

Used in Personal Care Industry:
Myristic acid diethanolamide is used as a surfactant and emulsifying agent for its excellent foaming and cleansing properties. It is commonly found in shampoos, body washes, and liquid soaps, enhancing the lathering and cleaning performance of these products.
Used in Household Products Industry:
In addition to personal care products, myristic acid diethanolamide is also used in household products as a surfactant and emulsifying agent. Its foaming and cleansing properties make it suitable for use in cleaning agents and detergents.
Used in Industrial Applications:
Myristic acid diethanolamide serves as a lubricant, corrosion inhibitor, and dispersing agent in various industrial applications. Its multifunctional properties make it a valuable component in the formulation of industrial products.
Used in Agricultural Products:
In the agricultural sector, myristic acid diethanolamide is used as a dispersing agent. Its ability to improve the distribution and application of agricultural products contributes to their effectiveness and performance.

Check Digit Verification of cas no

The CAS Registry Mumber 7545-23-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,5,4 and 5 respectively; the second part has 2 digits, 2 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 7545-23:
(6*7)+(5*5)+(4*4)+(3*5)+(2*2)+(1*3)=105
105 % 10 = 5
So 7545-23-5 is a valid CAS Registry Number.
InChI:InChI=1/C18H37NO3/c1-2-3-4-5-6-7-8-9-10-11-12-13-18(22)19(14-16-20)15-17-21/h20-21H,2-17H2,1H3

7545-23-5SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 19, 2017

Revision Date: Aug 19, 2017

1.Identification

1.1 GHS Product identifier

Product name N,N-Bis(2-hydroxyethyl)tetradecanamide

1.2 Other means of identification

Product number -
Other names N-myristoylethanolamide

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:7545-23-5 SDS

7545-23-5Relevant academic research and scientific papers

Modular Strategy to Expand the Chemical Diversity of DNA and Sequence-Controlled Polymers

De Rochambeau, Donatien,Sun, Yuanye,Barlog, Maciej,Bazzi, Hassan S.,Sleiman, Hanadi F.

supporting information, p. 9774 - 9786 (2018/09/12)

Sequence-defined polymers with customizable sequences, monodispersity, substantial length, and large chemical diversity are of great interest to mimic the efficiency and selectivity of biopolymers. We report an efficient, facile, and scalable synthetic route to introduce many chemical functionalities, such as amino acids and sugars in nucleic acids and sequence-controlled oligophosphodiesters. Through achiral tertiary amine molecules that are perfectly compatible with automated DNA synthesis, readily available amines or azides can be turned into phosphoramidites in two steps only. Individual attachment yields on nucleic acids and artificial oligophosphodiesters using automated solid-phase synthesis (SPS) were >90% in almost all cases. Using this method, multiple water-soluble sequence-defined oligomers bearing a range of functional groups in precise sequences could be synthesized and purified in high yields. The method described herein significantly expands the library of available functionalities for nucleic acids and sequence-controlled polymers.

Oil soluble molybdenum amine complex and preparation method thereof

-

Paragraph 0052, (2017/07/19)

The invention discloses an oil soluble molybdenum amine complex and a preparation method of the oil soluble molybdenum amine complex. The method adopts long-chain saturated fatty acid as the starting material, acylchlorination reaction is carried out on the long-chain saturated fatty acid and thionyl chloride to obtain 1-chloro saturated fatty acid, then amidation reaction is carried out on the 1-chloro saturated fatty acid and diethanol amine to obtain saturated fatty acid amide, and finally complexation is carried out on the saturated fatty acid amide and a molybdenum trioxide solution so as to obtain the oil soluble molybdenum amine complex. The prepared molybdenum amine complex has good oil solubility, solves the poor oil solubility, corrosion resistance, wear resistance and friction reduction and other problems difficult to overcome in existing products, at the same time significantly reduces the adding amount of high sulfur and phosphorus components, and has enormous boosting effect on organic molybdenum series lubricating products currently under research in China, thus promoting nationalization of high-end lubricating oil and efficient utilization and high added value of molybdenum resources.

Sulfonate type biomass surface active agent and synthetic method

-

Paragraph 0050; 0051, (2017/03/14)

The present invention relates to the field of organic compound synthesis, and specifically, relates to a sulfonate-type biomass surfactant based on a fatty acid methyl ester and a synthesis method thereof. A main component of city restaurant and kitchen swill waste oil is the fatty acid methyl ester. The sulfonate-type biomass surfactant based on the fatty acid methyl ester is prepared from the following steps: preparing fatty acid alkanolamide, and carrying out a sulfopropyl reaction. The sulfonate-type biomass surfactant based on the fatty acid methyl ester is applied in the field of oil production. The sulfonate-type biomass surfactant synthesized in the present invention has better surface activity and interfacial activity, is non-toxic, non-hazardous and degradable, does less harm to an environment and a stratum layer, can replace a conventional petroleum diesel-based surfactant, achieves purposes of resourceful comprehensive utilization of city restaurant and kitchen swill and added value improvement, and has a good application prospect; in addition, a synthesis reaction condition is mild, a preparation process is simple, and the process is reasonable, applying to scale production; the surfactant is used as an oil washing agent of a chemical flooding system in oil drilling, improves an oil washing effect, and thus improves a crude oil recovery rate.

Low molecular weight PEI-based biodegradable lipopolymers as gene delivery vectors

Xun, Miao-Miao,Zhang, Xue-Chao,Zhang, Ji,Jiang, Qian-Qian,Yi, Wen-Jing,Zhu, Wen,Yu, Xiao-Qi

, p. 1242 - 1250 (2013/03/29)

Non-viral gene vectors play an important role in the development of gene therapy. In this report, different hydrophobic chains were introduced into low molecular weight (LMW) PEI-based biodegradable oligomers to form a series of lipopolymers (LPs), and their structure-activity relationships were studied. Results revealed that the nine polymers can condense plasmid DNA well to form nanoparticles with appropriate sizes (120-250 nm) and positive zeta-potentials (+25-40 V). In vitro experiments were carried out and it was found that LP2 showed much higher transfection efficiency both in the presence and in the absence of serum under the polymer/DNA weight ratio of 0.8 in A549 cells.

Lipase-catalyzed synthesis of fatty acid diethanolamides.

Liu,Nag,Shaw

, p. 5761 - 5764 (2007/10/03)

Diethanolamides are nonionic emulsifiers widely used in industries such as cosmetics and as corrosion inhibitors. Candida antarctica lipase (Novozym 435) was used to catalyze the amidation of various fatty acids with diethanolamine. Contents of fatty acid

Nematocidal activity of long alkyl chain amides, amines and their derivatives on dog roundworm larvae

Kiuchi,Nishizawa,Kawanishi,Kinoshita,Ohsima,Uchitani,Sekino,Ishida,Kondo,Tsuda

, p. 3234 - 3244 (2007/10/02)

The nematocidal activity of amides and amines having a long alkyl chain against the second-stage larva of dog roundworm, Toxocara canis, was examined. Long chain acyl amides with smaller substituents on the nitrogen showed stronger activity and the activity of cyclic amine amides was stronger than that of acyclic ones. In a series of homologous amides, the activity was dependent on the alkyl chain length: it reached a maximum at an optimal chain length and decreased in both shorter and longer homologues. The relationship between the activity and hydrophobicity of the homologues was analysed by the use of the bilinear model. The hydrophobicity of a compound, which gives a maximal activity, was similar for all neutral amides, but amides which have an additional amine group in the molecule had different values. Tertiary amines and their salts having a long alkyl chain also showed nematocidal activities comparable to those of the corresponding amides. The salts killed the larva at concentrations lower than their critical micell concentration, suggesting that they behave as a single molecule for the nematocidal action.

Method for lowering the free fatty acid content in sebum using certain fatty acid amides

-

, (2008/06/13)

A method of lowering the free fatty acid content in sebum on the skin surface by topically applying a member of a certain class of fatty acid amides to the affected skin area. Oleic acid diethanolamide is illustrated as a representative of the useful class. After cleansing, rinsing and drying the skin area to be treated, the fatty acid amide formulation is applied thereto and left thereon for beneficial action to occur.

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