Cui Yuhuan, Sun Changning, Qu Yanbin, Dai Tianyi, Zhou Hongyu, Wang Zhili, Jiang Qing
Key Laboratory of Automobile Materials, Ministry of Education, and School of Materials Science and Engineering, Jilin University, Changchun 130022, China.
Chem Commun (Camb). 2022 Sep 15;58(74):10290-10302. doi: 10.1039/d2cc03410g.
Ammonia (NH) is essential for the industrial production of fertilizers, pharmaceuticals, plastics, synthetic fibers, resins, and chemicals, and it is also a promising carbon-free energy carrier. The electrocatalytic nitrogen reduction reaction (eNRR) driven by renewable energy sources at ambient temperature and atmospheric pressure is an alternative approach to the Haber-Bosch process for NH synthesis. However, the efficient electrocatalytic reduction of nitrogen (N) to NH is challenging due to the lack of effective electrocatalysts. Tremendous effort has been made to develop high-performance electrocatalysts for the eNRR in the past few years. In this review, we summarize recent progress relating to electrocatalysts for the eNRR from both theoretical and experimental aspects. Remaining challenges and perspectives for promoting the eNRR to generate NH are also discussed. This review hopes to guide the design and development of efficient electrocatalysts for the eNRR for NH synthesis.
氨(NH₃)对于肥料、药品、塑料、合成纤维、树脂和化学品的工业生产至关重要,并且它还是一种很有前景的无碳能源载体。在常温常压下由可再生能源驱动的电催化氮还原反应(eNRR)是合成氨的哈伯-博施法的一种替代方法。然而,由于缺乏有效的电催化剂,将氮气(N₂)高效电催化还原为氨具有挑战性。在过去几年中,人们为开发用于eNRR的高性能电催化剂付出了巨大努力。在这篇综述中,我们从理论和实验两个方面总结了与eNRR电催化剂相关的最新进展。还讨论了在促进eNRR生成氨方面仍然存在的挑战和前景。这篇综述希望能指导用于合成氨的eNRR高效电催化剂的设计与开发。