Published January 2012 | Version v1
Journal article

Efficient and Selective Debromination of vic-Dibromides to Alkenes Using CoCl2·6H2O/Indium System

  • 1. Korea Univ., Seoul (Korea, Republic of)

Description

We have found that vic-dibromides treated with CoCl2·6H2O/indium system in methanol are efficiently converted into the corresponding alkenes in high yields under mild conditions. Although the scope and limitations of this method have not been fully established, it is expected to be a useful and efficient alternative to the existing methods for the debromination of vic-dibromides. There is always considerable interest in the search for more efficient and selective procedures for the debromination of vic-dibromides. The reduction of CoCl2 to low-valent cobalt species and the synthetic utility of such species are well documented in the literature. Generally, reducing agents, such as zinc and magnesium, are used for the reduction of CoCl2. Because indium and zinc closely resemble each other in several aspects, including first ionization, we considered that a combination of CoCl2·6H2O with indium could facilitate the reductive debromination of vic-dibromides under mild conditions. As in the case of zinc, the reduction potential of indium is not highly negative (In: Eo, In+3/In = -0.345 V; Zn: Eo, Zn:+2/Zn = -0.763 V): thus, indium is not sensitive to water and does not form oxides readily in air. In recent years, indium metal has been the subject of active interest because of its unique properties such as low toxicity and high stability in water and air compared to other metals. In connection with our interest in exploring the utility of low-valent metal reagents for organic transformations, we herein wish to report an efficient and chemoselective method for the debromination of vic-dibromides to alkenes using CoCl2·6H2O/indium system at room temperature

Additional details

Publishing Information

Journal Title
Bulletin of the Korean Chemical Society
Journal Volume
33
Journal Issue
1
Series
9 refs, 1 tab
Journal Page Range
p. 27-28
ISSN
0253-2964

INIS