亲核细胞
电泳剂
电化学
电催化剂
酒
化学
甲酸
羧酸
二醇
邻接
电合成
反应机理
水溶液
组合化学
有机化学
催化作用
电极
物理化学
作者
Wei Chen,Jianqiao Shi,Chao Xie,Zhou Wang,Leitao Xu,Yingying Li,Yandong Wu,Binbin Wu,Yucheng Huang,Bo Zhou,Ming Yang,Jilei Liu,Chung‐Li Dong,Tehua Wang,Yuqin Zou,Shuangyin Wang
摘要
ABSTRACT Aqueous organic electrosynthesis such as nucleophile oxidation reaction (NOR) is an economical and green approach. However, its development has been hindered by the inadequate understanding of the synergy between the electrochemical and non-electrochemical steps. In this study, we unravel the NOR mechanism for the primary alcohol/vicinal diol electrooxidation on NiO. Thereinto, the electrochemical step is the generation of Ni3+-(OH)ads, and the spontaneous reaction between Ni3+-(OH)ads and nucleophiles is an electrocatalyst-induced non-electrochemical step. We identify that two electrophilic oxygen-mediated mechanisms (EOMs), EOM involving hydrogen atom transfer (HAT) and EOM involving C–C bond cleavage, play pivotal roles in the electrooxidation of primary alcohol to carboxylic acid and the electrooxidation of vicinal diol to carboxylic acid and formic acid, respectively. Based on these findings, we establish a unified NOR mechanism for alcohol electrooxidation and deepen the understanding of the synergy between the electrochemical and non-electrochemical steps during NOR, which can guide the sustainable electrochemical synthesis of organic chemicals.
科研通智能强力驱动
Strongly Powered by AbleSci AI