化学
催化作用
电化学
硝酸盐
组合化学
无机化学
有机化学
电极
物理化学
作者
Jingcheng Wu,Leitao Xu,Zhijie Kong,Kaizhi Gu,Yuxuan Lu,Xianwen Wu,Yuqin Zou,Shuangyin Wang
标识
DOI:10.1002/ange.202311196
摘要
Abstract Alanine is widely employed for synthesizing polymers, pharmaceuticals, and agrochemicals. Electrocatalytic coupling of biomass molecules and waste nitrate is attractive for the nitrate removal and alanine production under ambient conditions. However, the reaction efficiency is relatively low due to the activation of the stable substrates, and the coupling of two reactive intermediates remains challenging. Herein, we realize the integrated tandem electrochemical‐chemical‐electochemical synthesis of alanine from the biomass‐derived pyruvic acid (PA) and waste nitrate (NO 3 − ) catalyzed by PdCu nano‐bead‐wires (PdCu NBWs). The overall reaction pathway is demonstrated as a multiple‐step catalytic cascade process via coupling the reactive intermediates NH 2 OH and PA on the catalyst surface. Interestingly, in this integrated tandem electrochemical‐chemical‐electrochemical catalytic cascade process, Cu facilitates the electrochemical reduction of nitrate to NH 2 OH intermediates, which chemically couple with PA to form the pyruvic oxime, and Pd promotes the electrochemical reduction of pyruvic oxime to the desirable alanine. This work provides a green strategy to convert waste NO 3 − to wealth and enriches the substrate scope of renewable biomass feedstocks to produce high‐value amino acids.
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