
Journal of the American Chemical Society p. 1979 - 1986 (1982)
Update date:2022-08-04
Topics:
Amatore, Christian
Badoz-Lambling, Janine
Bonnel-Huyghes, Claudine
Pinson, Jean
Saveant, Jean Michel
Thiebault, Andre
It is possible to induce the oxidation of alcoholates into the corresponding carbonyl compounds by electrochemical reduction of aromatic halides in liquid ammonia, i.e., to electrochemically trigger the reaction ArX + >CH-O- -> ArH + >C=O + X-.H-Atom transfer from the acoholate to the aryl radical formed upon reduction of the aryl halide appears as the key step of the oxidation process.The ketyl anion radical thus formed can be oxidized into the parent carbonyl compound, remain electrochemically stable, or be reduced into the dianion depending upon the location of the two corresponding standard potentials toward the reduction potential of the aryl halide.Electricity consumption thus tends toward 0, 1, and 2 F/mol for the three cases, respectively.The reactions competing with H-atom transfer, thus lowering the efficiency of the electrochemical inducement of the oxidation process, are electron transfer to the aryl radical which occur at the electrode surface and/or in the solution.These will play the role of termination steps for the corresponding chain system involving homogeneous initiation of the reaction.The kinetic analysis of the competition between H-atom transfer and homogeneous or heterogeneous electron transfer allows a detailed investigation of the reaction mechanism by electrochemical techniques such as cyclic voltammetry.This also leads to the determination of the rate constants of H-atom transfer of the alcoholate-aryl radical couple.
View MoreHK Vast Medicinal Chemistry Int'l Group Limited(expird)
website:http://www.hkvast.com/
Contact:+86-15000309979
Address:NO.6,Lane 108,Qinzhou Road,Xuhui District,Shanghai
Hangzhou innopharma technology Co,.Ltd.(expird)
Contact:+86-13388601988
Address:Room845,lixin building, moganshan road, hangzhou, china
Contact:0572-2722882
Address:1201,F3,xinghuibandao,
Shanghai Mio Chemical Co., Ltd
Contact:0086 21- 64401188-622
Address:16 Floor NO.2 Jiefang Building, No. 4855 Dushi Road, 201100 Shanghai, P.R.China
changsha chenjin chemical technology co.,LtD(expird)
Contact:86-731-84451263
Address:Room 201/217-218, 101 Jingyuan Electronic Technology Co.,Ltd. Testing Center, No.69, Lufeng Road, High-tech Development Zone, Changsha, China
Doi:10.1016/j.saa.2013.03.064
(2013)Doi:10.1016/j.ejmech.2013.03.034
(2013)Doi:10.1016/j.bmc.2005.09.053
(2006)Doi:10.1021/ja403387v
(2013)Doi:10.1016/S0040-4039(00)60100-4
(1992)Doi:10.1016/j.bmcl.2020.127476
(2020)