ChemicalBook--->CAS DataBase List--->70592-80-2

70592-80-2

70592-80-2 Structure

70592-80-2 Structure
IdentificationBack Directory
[Name]

LAURYL DIMETHYLAMINE OXIDE
[CAS]

70592-80-2
[Synonyms]

amines,
70592-80-2
N,N-Dimethylcocoamine oxide
dimethyl(tridecyl)amine oxide
(C10-16)alkyldimethylamine oxide
C10-C16?AlkylDimethylAmine?Oxide
AMine oxides,C10-16-alkyldiMethyl
C10-16ALKYLDIMETHYLAMINESN-OXIDES
Amines,C10-16-alkyldimethyl,N-oxides
(c10-c16-alkyl)dimethylamines,n-oxides
Dimethylalkyl(C=10~16)amines, N-oxides
Methyl (1-BOC-piperidin-4-yl)carboxylate
Lauryl dimethylamine oxide (30% in water)
5-Amino-1-(4-bromophenyl)-4-cyano-3-methyl-1H-pyrazole
5-Amino--4-cyano-1-(2,4-difluorophenyl)-3-methyl-1H-pyrazole
[EINECS(EC#)]

274-687-2
[Molecular Formula]

C10H13Br2N
[MDL Number]

MFCD00039141
[MOL File]

70592-80-2.mol
Questions And AnswerBack Directory
[Preparation]

1. Direct oxidation with air or oxygen: Amine oxides are prepared by oxidizing tertiary amines with an oxidizing agent. There are two synthetic routes. The reaction formula is as follows: R1R2R3N + O2 → R1R2R3N → O. Oxygen or air is passed into a high-pressure reactor containing water, alcohol solvent, and tertiary amine. The reaction is carried out at 100-150℃ and 15-70MPa for 16-64 hours to obtain an amine oxide product with a content of 30%-80%. 2. Preparation using nitrogen peroxide or peroxidized organic acids as oxidizing agents: The reaction formula is as follows: R1R2R3N + H2O2 → R1R2R3N → O. The tertiary amine is dissolved in water (or alcohol solvent), and a small amount of citric acid and its salt and disodium EDTA are added. The temperature is raised to 60-70℃, and an excess of 30% hydrogen peroxide is added dropwise. The reaction is maintained at this temperature for 1 hour, then the temperature is further raised to 75-80℃ and the reaction continues for 3 hours. The temperature is then lowered to 60℃, and a calculated amount of sodium bisulfite is added to decompose residual oxygen. The resulting liquid product has an active ingredient content of 30%. The tertiary amine conversion rate can reach over 98%. The added citric acid acts as a hydrogen peroxide stabilizer, and disodium EDTA acts as a metal ion chelating agent; both also act as catalysts to improve the tertiary amine conversion rate.
Chemical PropertiesBack Directory
[EPA Substance Registry System]

C10-16-Alkyldimethylamines oxides (70592-80-2)
Safety DataBack Directory
[Symbol(GHS) ]

Environment (GHS09)Corrosion (GHS05)
GHS09,GHS05
[Signal word ]

Danger
[Hazard statements ]

H315-H318-H410
[Precautionary statements ]

P264-P280-P302+P352-P321-P332+P313-P362-P280-P305+P351+P338-P310-P273-P391-P501
[RIDADR ]

UN 2734 8/ PGI
[TSCA ]

TSCA listed
[HazardClass ]

8
[PackingGroup ]

I
[Hazardous Substances Data]

70592-80-2(Hazardous Substances Data)
Hazard InformationBack Directory
[Chemical Properties]

Light yellow solid
[Uses]

5-Amino-4-cyano-1-(2,4-difluorophenyl)-3-methyl-1H-pyrazole is a building block used in synthetic chemistry.
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