To Molecularly Block Hydrogen Evolution Sites of Molybdenum Disulfide toward Improved Catalytic Performance for Electrochemical Nitrogen Reduction.

Poe Ei Phyu Win,Dongxue Yu, Wenjuan Song,Xiang Huang,Peng Zhu,Guanyu Liu,Jiong Wang

Small methods(2023)

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摘要
2H-molybdenum disulfide (2H-MoS ) represents a classical catalyst for the electrochemical N reduction reaction (NRR) in water that offers a promising technology toward sustainable production of NH driven by renewable energy. While the catalytic efficiency is severely limited by a simultaneous and competing H evolution reaction (HER). Herein, it is proposed that the S edge of 2H-MoS , which is known as main sites to afford HER, is intentionally covered by cobalt phthalocyanine (CoPc) molecules through axial coordination. While the Mo sites with S vacancies at 2H-MoS edge is recognized as highly NRR active, and can keep structurally intact in the CoPc based modification. The resultant composite thus exhibits high NRR performance with Faradic efficiency and NH yields increase by fourfold and twofold, respectively, comparing to pristine 2H-MoS . These findings provide a deep insight into the mechanism of 2H-MoS based NRR catalysis and suggest an efficient molecular modification strategy to promote NRR in water.
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关键词
active sites,electrochemical nitrogen reduction reaction,molecular blocking,molybdenum disulfide
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