N-Methylacetamide

N-Methylacetamide Basic information
Product Name:N-Methylacetamide
Synonyms:LABOTEST-BB LT00779190;dimethylcarboxamide;ACETYL METHYLAMIDE;ACETYLMETHYLAMINE;ACETMETHYLAMIDE;ACETIC ACID METHYLAMIDE;NMA;N-METHYLACETAMIDE
CAS:79-16-3
MF:C3H7NO
MW:73.09
EINECS:201-182-6
Product Categories:Building Blocks;Chemical Synthesis;Nitrogen Compounds;Organic Building Blocks;Protected Amines;79-16-3
Mol File:79-16-3.mol
N-Methylacetamide Structure
N-Methylacetamide Chemical Properties
Melting point 26-28 °C (lit.)
Boiling point 204-206 °C (lit.)
density 0.957 g/mL at 25 °C (lit.)
vapor pressure 12-3680Pa at 15-113℃
refractive index n20/D 1.433(lit.)
Fp 227 °F
storage temp. Inert atmosphere,Room Temperature
solubility miscible with ethanol, ether, acetone, water, chloroform, benzene
pka16.61±0.46(Predicted)
form Solid
color Colourless
PH7 (H2O)
explosive limit3.2-18.1%(V)
Water Solubility soluble
BRN 1071255
Stability:Stable. Combustible. Incompatible with strong oxidizing agents.
InChIKeyOHLUUHNLEMFGTQ-UHFFFAOYSA-N
LogP-1.05--0.7 at 25℃
CAS DataBase Reference79-16-3(CAS DataBase Reference)
NIST Chemistry ReferenceAcetamide, N-methyl-(79-16-3)
EPA Substance Registry SystemN-Methylacetamide (79-16-3)
Safety Information
Hazard Codes T
Risk Statements 61
Safety Statements 53-45
WGK Germany 2
RTECS AC5960000
TSCA Yes
HS Code 29241900
Hazardous Substances Data79-16-3(Hazardous Substances Data)
ToxicityLD50 oral in rat: 5gm/kg
MSDS Information
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N-Methylacetamide Usage And Synthesis
Chemical Propertiescolourless liquid or solid. Soluble in water, ethanol, benzene, ether, chloroform, insoluble in petroleum ether.
UsesN-Methylacetamide is used as a chemical intermediate in the production of life science, agrochemicals, electronic materials and construction materials. It is also used as a solvent, in electrochemistry.
DefinitionChEBI: N-methylacetamide is a monocarboxylic acid amide that is the N-methyl derivative of acetamide. It has a role as a metabolite. It is a member of acetamides and a monocarboxylic acid amide. It is functionally related to an acetamide.
Production MethodsAf-Methylacetamide has been prepared by reaction of methylamine with hot acetic acid (D'Alelio and Reid, 1937) and with acetic anhydride (Mauger and Soper, 1946). Other methods include heating iV,N-dimethylurea with acetic acid (US Patent, 1936) and reduction/hydrogenation of N-(hydroxymethyl)acetamide (US Patent, 1944).
Industrial usesEven though N-methylacetamide shares many general physical and chemical properties with dimethylacetamide, it has not found the extensive industrial applications of the latter. N-methylacetamide dissolves many inorganic salts.
Safety ProfileModerately toxic by intraperitoneal and subcutaneous routes. Mddly toxic by ingestion and intravenous routes. An experimental teratogen. Experimental reproductive effects. Mutation data reported. When heated to decomposition it emits toxic fumes of NOx.
MetabolismIn a recent comparative toxicity and metabolism study on four formamides and on N-methylacetamide, the sole metabolite of N-methylacetamide in the urine of mice was identified as N-(hydroxymethyl)acetamide (Kestell et al 1987). There was no evidence of induction of hepatic drug metabolizing enzymes in rats following treatment with N-methylacetamide (Ackerman and Leibman, 1977). N-Methylacetamide influenced neither the sleeping time induced by hexobarbital nor the metabolism of hexobarbital or aniline.
Purification MethodsFractionally distil it under vacuum, then fractionally crystallise it twice from its melt. Likely impurities include acetic acid, methyl amine and H2O. For a detailed purification procedure, see Knecht and Kolthoff, Inorg Chem 1 195 1962. Although N-methylacetamide is commercially available it is often extensively contaminated with acetic acid, methylamine, water and an unidentified impurity. The recommended procedure is to synthesise it in the laboratory by direct reaction. The gaseous amine is passed into hot glacial acetic acid, to give a partially aqueous solution of methylammonium acetate which is heated to ca 130o to expel water. Chemical methods of purification such as extraction by pet ether, treatment with H2SO4, K2CO3 or CaO can be used but are more laborious. Tests for purity include the Karl Fischer titration for water; this can be applied directly. Acetic acid and methylamine can be detected polarographically. In addition to the above, purification of N-methylacetamide can be achieved by fractional freezing, including zone melting, repeated many times, or by vacuum distillation under reduced pressures. For details of zone melting techniques, see Knecht in Recommended Methods for Purification of Solvents and Tests for Impurities, Coetzee Ed. Pergamon Press 1982.[Beilstein 4 IV 176.]
2-Chloro-N-(2,6-dimethylphenyl)acetamide N-Methyl-N-(trimethylsilyl)trifluoroacetamide N-Methyl-bis(trifluoroacetamide) 4'-Chloroacetoacetanilide N-(2-CHLOROETHYL)BENZAMIDE N-(HYDROXYMETHYL)ACETAMIDE Acetaminophen N-Methylacetamide 4-CHLOROBENZANILIDE 4'-CHLOROACETANILIDE Acetamide DIACETAMIDE 2-Chloro-N-[4-chloro-2-(2-chlorobenzoyl)phenyl]acetamide Thioacetamide 2'-Fluoroacetanilide 3-(TRIFLUOROMETHYL)ACETANILIDE N,N-Dimethylacetamide 2-ACETAMIDOFLUORENE

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