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Recent advancement in the electrocatalytic synthesis of ammonia

机译:最近在electrocatalytic进步氨的合成

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Ammonia can not only be used as an active nitrogen component of nitrogen fertilizers, fibers, explosives, etc., but also provides a high energy density and carbon free energy carrier. Currently, ammonia is industrially synthesized by the Haber Bosch process at high temperature and high pressure, which results in high energy loss and a serious greenhouse effect. The electrocatalytic nitrogen reduction reaction (NRR) is a sustainable and environmentally friendly strategy for the synthesis of ammonia. Although lots of electrocatalysts have been developed for this reaction, further breakthroughs are needed in catalytic activity, selectivity and Faraday efficiency to meet the large-scale commercial demand. In this review, the recent advance in NRR electrocatalysis is thoroughly commented on. Different kinds of electrocatalysts used in ammonia synthesis (including single atom catalysts, metal oxide catalysts, nanocomposite catalysts, and metal free catalysts) are introduced. The reaction mechanism of the NRR is discussed in detail. The structure-function relationship and efficient strategies to improve the ammonia yield are clearly discussed. The effect of the electronic structure and morphology of catalysts on the selectivity of the NRR is highlighted. The research directions and perspectives on the further development of more efficient electrocatalysts for the NRR are provided.
机译:氨不仅可以作为一个活跃的氮组件的氮化肥、纤维、炸药等,但也提供了一个高的能量密度和碳自由能量载体。目前,工业合成了氨在高温度和哈伯博世的过程高压,导致较高的能量损失和一个严重的温室效应。electrocatalytic氮还原反应(NRR)是一个可持续和环境友好的氨的合成策略。虽然很多electrocatalysts进一步为这个反应,开发需要突破的催化活性,选择性和法拉第效率来满足大规模的商业需求。最近的进步NRR电催化作用彻底的评论。electrocatalysts用于氨合成(包括单原子催化剂,金属氧化物催化剂、纳米复合催化剂和金属介绍了自由催化剂)。详细讨论了NRR机制。结构关系和有效的策略来提高氨产量清楚地讨论。催化剂的结构和形态选择性的NRR突出显示。研究方向和角度进一步发展更有效率electrocatalysts NRR提供。

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