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(S)-(phenyl[D1]methyl)amine is a chiral amine derivative, characterized by the presence of a deuterium atom (D1) at the methyl group, which replaces one hydrogen atom. (S)-(phenyl[D1]methyl)amine features a phenyl ring attached to a chiral carbon center, resulting in two possible enantiomers: (S) and (R). The (S)-enantiomer is the one with the phenyl group on the left side when looking at the chiral carbon from the perspective of the nitrogen atom. (S)-(phenyl[D1]methyl)amine is of interest in organic chemistry and pharmaceuticals due to its potential applications in the synthesis of chiral drugs and other biologically active molecules. The presence of deuterium can affect the compound's reactivity and stability, making it a valuable tool for studying isotope effects in chemical reactions.

3481-14-9

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3481-14-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 3481-14-9 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 3,4,8 and 1 respectively; the second part has 2 digits, 1 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 3481-14:
(6*3)+(5*4)+(4*8)+(3*1)+(2*1)+(1*4)=79
79 % 10 = 9
So 3481-14-9 is a valid CAS Registry Number.

3481-14-9Downstream Products

3481-14-9Relevant academic research and scientific papers

Synthesis of optically active deuterated primary amines via reduction of N - Tert -butanesulfinyl aldimines

Liu, Mao,Xie, Ying,Li, Jing,Pan, Hongjie,Tian, Hua,Shi, Yian

, p. 8417 - 8421 (2014)

Optically active deuterated primary amines have been obtained with 78-98% ee's from chiral N-tert-butanesulfinyl aldimines via reduction with N-Selectride and subsequent alcoholysis.

On the configurational stability of chiral heteroatom-substituted [D 1]Methylpalladium complexes as intermediates of stille and suzuki-miyaura cross-coupling reactions

Malova Krizkova, Petra,Hammerschmidt, Friedrich

supporting information, p. 5143 - 5148 (2013/11/06)

Enantiomerically pure (S)-tributylstannyl[D1]methanol and (R)- and (S)-tributylstannyl[D1]methyl benzoates were Stille-coupled with bromobenzene and benzoyl chloride in 1,4-dioxane and toluene using [(Ph 3P)4Pd] or [(Ph3P)2PdCl2] either alone or in combination with CuCN as cocatalyst at temperatures up to 80 °C. The products were found to be enantiomerically pure. (R)- and (S)-N-(tributylstannyl[D1]methyl)phthalimides gave enantiomerically pure products with benzoyl chloride, but with bromobenzene protected phenyl[D1]methylamines gave products of only 52-69 % ee depending on the solvent used. Tributyl(thio[D1]methyl)stannanes could not be Stille-coupled with benzoyl chloride or with bromobenzene. Similarly, dimethyl phenyl[D1]methylboronate underwent a Suzuki-Miyaura coupling with bromobenzene to give phenyl[D1]methylsilane with 99 % ee. All couplings followed a retentive course and, except in one case, the intermediate [XCHDPdLn] complexes were found to be microscopically configurationally stable. Stille coupling of enantiomerically pure tributylstannyl[D1]methanol, its benzoate, and the N-(tributylstannyl[D1]methyl)phthalimide with bromobenzene and benzoyl chloride furnished products containing a chiral XCHD group. Overall net retention of configuration was found in all cases.

Enantioselective borodeuteride reduction of aldimines catalyzed by cobalt complexes: Preparation of optically active deuterated primary amines

Miyazaki, Daichi,Nomura, Kohei,Yamashita, Tatsuya,Iwakura, Izumi,Ikeno, Taketo,Yamada, Tohru

, p. 3555 - 3558 (2007/10/03)

[Equation presented] The enantioselective borodeuteride reduction catalyzed by optically active β-ketoiminato cobalt complexes was applied to N-(di(o-tolyl)phosphinyl)-aldimines to afford the corresponding optically active deuterated primary amines in hig

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