Saving the Energy Loss in Lithium‐Mediated Nitrogen Fixation by Using a Highly Reactive Li3N Intermediate for C−N Coupling Reactions

化学 活性氮 固氮 锂(药物) 氮气 联轴节(管道) 材料科学 心理学 有机化学 冶金 精神科
作者
Gao‐Feng Chen,Aleksandr Savateev,Zihan Song,Haoyu Wu,Yevheniia Markushyna,Lili Zhang,Haihui Wang,Markus Antonietti
出处
期刊:Angewandte Chemie [Wiley]
卷期号:61 (27) 被引量:20
标识
DOI:10.1002/anie.202203170
摘要

Abstract Direct synthesis of N‐containing organic compounds from dinitrogen (N 2 ) can make synthetic chemistry more sustainable. Previous bottlenecks in lithium‐mediated N 2 fixation were resolved by loading Li‐metal anodes covered with the typical Li + ion‐conducting solid electrolyte interface, which are subsequently allowed to react with N 2 . The developed strategy allowed us to reach high Faradaic efficiencies toward Li 3 N. These reactive Li 3 N were then contacted with acylchlorides. Surface nitride ions are more nucleophilic than amines which direct the two C−N coupling reactions toward formation of imides rather than amides, and an integrated current efficiency of 57–77 % could be realized. This study thereby not only provides a feasible electrochemical Li 3 N synthesis, but also delineates an economical and green synthesis of highly valuable N‐containing compounds from N 2 under mild conditions, just using commercial spare parts and processes from the omnipresent Li battery technology.
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