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4-Nitrobenzyl 3-phenyl-2-aminopropionate is a complex organic compound with the chemical formula C17H16N2O4. It is a derivative of 3-phenyl-2-aminopropionic acid, featuring a nitrobenzyl group attached to the nitrogen atom. 4-nitrobenzyl 3-phenyl-2-aminopropionate is characterized by its yellow crystalline appearance and is soluble in organic solvents. It is synthesized through a series of chemical reactions, often involving the nitration of benzyl halides and subsequent coupling with the aminopropionic acid moiety. 4-Nitrobenzyl 3-phenyl-2-aminopropionate is of interest in the field of organic chemistry, particularly for its potential applications in the synthesis of pharmaceuticals and other specialty chemicals. Its structure and properties make it a valuable intermediate in the development of new compounds with specific therapeutic or industrial uses.

7413-82-3

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7413-82-3 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7413-82-3 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,4,1 and 3 respectively; the second part has 2 digits, 8 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 7413-82:
(6*7)+(5*4)+(4*1)+(3*3)+(2*8)+(1*2)=93
93 % 10 = 3
So 7413-82-3 is a valid CAS Registry Number.

7413-82-3Relevant academic research and scientific papers

Competing benzyl cation transfers in the gas-phase fragmentation of the protonated benzyl phenylalaninates

Li, Fei,Wu, Yanqing,Zhang, Ningwen,Jiang, Jianxiong,Jiang, Kezhi

, p. 23 - 29 (2014)

In this study, the competing benzyl cation transfer reactions have been explored by investigating the gas phase chemistry of the protonated benzyl phenylalaninates. Protonation at the carboxylic O atom results in the breakage of the ester CO bond to afford the benzyl cation, which undergoes the competing migration to the amino N atom or the phenyl ring C atom. Both the amino and the phenyl ring hydrogen atoms can be activated to be mobile due to the electrophilic attack of the transferring benzyl cation, and migration of the activated hydrogen atom to the carboxylic hydroxyl leads to (H2O + CO) elimination of the precursor ion. Interestingly, it is much more preferred for the benzyl cation to transfer to the phenyl ring via the amino N, leading to the stepwise benzyl cation transfer, albeit the amino N atom contains more nucleophilic affinity. The mechanistic processes have been confirmed by the MS3 spectra data, along with D-labeling experiments and theoretical calculations.

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