Samarium(0) and 1,1‘-Dioctyl-4,4‘-Bipyridinium Dibromide:  A Novel Electron-Transfer System for the Chemoselective Reduction of Aromatic Nitro Groups

Chengzhi Yu, Bin Liu, and Longqin Hu*
Department of Pharmaceutical Chemistry, College of Pharmacy, Rutgers, The State University of New Jersey, 160 Frelinghuysen Road, Piscataway, New Jersey 08854-8020
J. Org. Chem., 2001, 66 (3), pp 919–924
DOI: 10.1021/jo005666q
Publication Date (Web): January 11, 2001
Copyright © 2001 American Chemical Society
*

 To whom correspondence should be addressed. Tel:  (732) 445-5291; fax:  (732) 445-6312.

, LongHu@rci.rutgers.edu

Abstract

Abstract Image

A mild and efficient electron-transfer method was developed for the chemoselective reduction of aromatic nitro groups using samarium(0) metal in the presence of a catalytic amount of 1,1‘-dioctyl-4,4‘-bipyridinium dibromide. This method was found to give the product aromatic amine in 79−99% yield with selectivity over a number of other functional and protecting groups such as alkene, azide, benzyl ether, nitrile, amide, halide, p-toluenesulfonamide, t-Boc, tert-butyldiphenylsilyl ether, and aliphatic nitro groups. Our results also indicate that samarium(0) plays an important role in the reduction process and that 1,1‘-dioctyl-4,4‘-bipyridinium dibromide acts as an electron-transfer catalyst and is essential in the activation of samarium(0) metal. The major active reducing agent responsible for the reduction is believed to be the radical cation species formed from 1,1‘-dioctyl-4,4‘-bipyridinium dibromide.

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History

  • Published In Issue February 09, 2001
  • Received October 2, 2000

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