电合成
化学
甘氨酸
辅因子
电化学
组合化学
酶
有机化学
生物化学
电极
氨基酸
物理化学
作者
Ranran Wu,Fei Li,Xinyu Cui,Zehua Li,Chunling Ma,Huifeng Jiang,Lingling Zhang,Y.‐H. Percival Zhang,Tongxin Zhao,Yanping Zhang,Yin Li,Hui Chen,Zhiguang Zhu
标识
DOI:10.1002/anie.202218387
摘要
Abstract Enzymatic electrosynthesis has gained more and more interest as an emerging green synthesis platform, particularly for the fixation of CO 2 . However, the simultaneous utilization of CO 2 and a nitrogenous molecule for the enzymatic electrosynthesis of value‐added products has never been reported. In this study, we constructed an in vitro multienzymatic cascade based on the reductive glycine pathway and demonstrated an enzymatic electrocatalytic system that allowed the simultaneous conversion of CO 2 and NH 3 as the sole carbon and nitrogen sources to synthesize glycine. Through effective coupling and the optimization of electrochemical cofactor regeneration and the multienzymatic cascade reaction, 0.81 mM glycine was yielded with a highest reaction rate of 8.69 mg L −1 h −1 and faradaic efficiency of 96.8 %. These results imply a promising alternative for enzymatic CO 2 electroreduction and expand its products to nitrogenous chemicals.
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