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4-[benzyl(methyl)amino]butanoic acid is a chemical compound with the molecular formula C12H18NO2. It is a derivative of butanoic acid, featuring a benzyl group attached to the nitrogen atom of a methylamine moiety. 4-[benzyl(methyl)amino]butanoic acid is known for its potential applications in the pharmaceutical industry, particularly as a building block for the synthesis of various drugs and medicinal compounds. Its structure allows for the formation of salts and esters, which can be further modified to create a range of bioactive molecules. The compound's properties, such as its solubility and reactivity, make it a valuable intermediate in organic synthesis, especially in the development of new therapeutic agents.

188132-01-6

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188132-01-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 188132-01-6 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,8,8,1,3 and 2 respectively; the second part has 2 digits, 0 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 188132-01:
(8*1)+(7*8)+(6*8)+(5*1)+(4*3)+(3*2)+(2*0)+(1*1)=136
136 % 10 = 6
So 188132-01-6 is a valid CAS Registry Number.

188132-01-6Relevant articles and documents

Mechanism of gold(I)-catalyzed rearrangements of acetylenic amine-N-oxides: Computational investigations lead to a new mechanism confirmed by experiment

Noey, Elizabeth L.,Luo, Yingdong,Zhang, Liming,Houk

experimental part, p. 1078 - 1084 (2012/03/12)

Figure Persented: Quantum mechanical studies of the mechanism of gold-catalyzed rearrangements of acetylenic amine-N-oxides to piperidinones or azepanones have revealed a new mechanism involving a concerted heteroretroene reaction, formally a 1,5 hydrogen shift from the N-alkyl groups to the vinyl position of a gold-coordinated methyleneisoxazolidinium or methyleneoxazinanium. Density functional calculations (B3LYP, B3LYP-D3) on the heteroretroene mechanism reproduce experimental regioselectivities and provide an explanation as to why the hydrogen is transferred from the smaller amine substituent. In support of the proposed mechanism, new experimental investigations show that the hydrogen shift is concerted and that gold carbenes are not involved as reaction intermediates.

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