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METHYL 4-DIETHYLAMINOBENZOATE, also known as Benzocaine, is an organic compound that serves as an intermediate in the synthesis of pharmaceuticals and various chemicals. It is an ester formed from benzoic acid and diethylamine, known for its numbing and soothing properties. Benzocaine is a white, crystalline compound that is soluble in ethanol, and its use is regulated in various countries due to its potential for skin irritation and systemic toxicity.

91563-80-3

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91563-80-3 Usage

Uses

Used in Pharmaceutical Industry:
METHYL 4-DIETHYLAMINOBENZOATE is used as a local anesthetic for its numbing and soothing properties. It is commonly found in over-the-counter products such as throat lozenges and teething gels to provide relief from pain and discomfort.
Used in Chemical Production:
METHYL 4-DIETHYLAMINOBENZOATE is used as an intermediate in the synthesis of various chemicals, contributing to the development of a wide range of products in the chemical industry.

Check Digit Verification of cas no

The CAS Registry Mumber 91563-80-3 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,1,5,6 and 3 respectively; the second part has 2 digits, 8 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 91563-80:
(7*9)+(6*1)+(5*5)+(4*6)+(3*3)+(2*8)+(1*0)=143
143 % 10 = 3
So 91563-80-3 is a valid CAS Registry Number.
InChI:InChI=1/C12H17NO2/c1-4-13(5-2)11-8-6-10(7-9-11)12(14)15-3/h6-9H,4-5H2,1-3H3

91563-80-3Relevant academic research and scientific papers

Selective N-alkylation of amines using nitriles under hydrogenation conditions: Facile synthesis of secondary and tertiary amines

Ikawa, Takashi,Fujita, Yuki,Mizusaki, Tomoteru,Betsuin, Sae,Takamatsu, Haruki,Maegawa, Tomohiro,Monguchi, Yasunari,Sajiki, Hironao

supporting information; experimental part, p. 293 - 304 (2012/02/01)

Nitriles were found to be highly effective alkylating reagents for the selective N-alkylation of amines under catalytic hydrogenation conditions. For the aromatic primary amines, the corresponding secondary amines were selectively obtained under Pd/C-catalyzed hydrogenation conditions. Although the use of electron poor aromatic amines or bulky nitriles showed a lower reactivity toward the reductive alkylation, the addition of NH4OAc enhanced the reactivity to give secondary aromatic amines in good to excellent yields. Under the same reaction conditions, aromatic nitro compounds instead of the aromatic primary amines could be directly transformed into secondary amines via a domino reaction involving the one-pot hydrogenation of the nitro group and the reductive alkylation of the amines. While aliphatic amines were effectively converted to the corresponding tertiary amines under Pd/C-catalyzed conditions, Rh/C was a highly effective catalyst for the N-monoalkylation of aliphatic primary amines without over-alkylation to the tertiary amines. Furthermore, the combination of the Rh/C-catalyzed N-monoalkylation of the aliphatic primary amines and additional Pd/C-catalyzed alkylation of the resulting secondary aliphatic amines could selectively prepare aliphatic tertiary amines possessing three different alkyl groups. According to the mechanistic studies, it seems reasonable to conclude that nitriles were reduced to aldimines before the nucleophilic attack of the amine during the first step of the reaction.

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