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Graphdiyne Interface Engineering: Highly Active and Selective Ammonia Synthesis

机译:Graphdiyne界面工程:高度活跃和选择性氨合成

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摘要

A freestanding 3D graphdiyne-cobalt nitride (GDY/Co2N) with a highly active and selective interface is fabricated for the electrochemical nitrogen reduction reaction (ECNRR). Density function theory calculations reveal that the interface-bonded GDY contributes an unique p-electronic character to optimally modify the Co-N compound surface bonding, which generates as-observed superior electronic activity for NRR catalysis at the interface region. Experimentally, at atmospheric pressure and room temperature, the electrocatalyst creates a new record of ammonia yield rate (YNH3 ) and Faradaic efficiency (FE) of 219.72 mu g h(-1) mg(cat.)(-1) and 58.60 %, respectively, in acidic conditions, higher than reported electrocatalysts. Such a catalyst is promising to generate new concepts, new knowledge, and new phenomena in electrocatalytic research, driving rapid development in the field of electrocatalysis.
机译:为电化学氮气还原反应(ECNRR)制造具有高活性和选择性界面的独立式3D Graphdiyne-Cobalt氮化物(GDY / CO2N)。 密度函数理论计算揭示界面粘结的GDY有助于最佳地改变CO-N复合表面粘合,这在界面区域的NRR催化产生了卓越的电子活性。 在实验上,在大气压和室温下,电催化剂分别产生219.72μg(-1)毫克(猫。)( - 1)和58.60%的新氨屈服率(YNH3)和法拉第效率(Fe)的新记录 ,在酸性条件下高于报告的电催化剂。 这种催化剂很有希望在电催化研究中产生新的概念,新知识和新现象,在电寄生分析领域驾驶快速发展。

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