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P 区金属基电催化剂用于氮气还原合成氨:一个小综述。

P-Block Metal-Based Electrocatalysts for Nitrogen Reduction to Ammonia: A Minireview.

机构信息

State Key Laboratory Based of Eco-chemical Engineering College of Chemical Engineering, Qingdao University of Science & Technology, Qingdao, 266042, China.

School of Materials Science and Engineering, Guangdong University of Petrochemical Technology, Maoming, 525000, China.

出版信息

Small. 2023 Apr;19(16):e2206776. doi: 10.1002/smll.202206776. Epub 2023 Jan 6.

Abstract

Electrochemical nitrogen reduction reaction (NRR) to ammonia (NH ) using renewable electricity provides a promising approach towards carbon neutral. What's more, it has been regarded as the most promising alternative to the traditional Haber-Bosch route in current context of developing sustainable technologies. The development of a class of highly efficient electrocatalysts with high selectivity and stability is the key to electrochemical NRR. Among them, P-block metal-based electrocatalysts have significant application potential in NRR for which possessing a strong interaction with the N 2p orbitals. Thus, it offers a good selectivity for NRR to NH . The density of state (DOS) near the Fermi level is concentrated for the P-block metal-based catalysts, indicating the ability of P-block metal as active sites for N adsorption and activation by donating p electrons. In this work, we systematically review the recent progress of P-block metal-based electrocatalysts for electrochemical NRR. The effect of P-block metal-based electrocatalysts on the NRR activity, selectivity and stability are discussed. Specifically, the catalyst design, the nature of the active sites of electrocatalysts and some strategies for boosting NRR performance, the reaction mechanism, and the impact of operating conditions are unveiled. Finally, some challenges and outlooks using P-block metal-based electrocatalysts are proposed.

摘要

用电能将氮气还原为氨气(NH )以实现碳中和,这为我们提供了一条很有前景的途径。此外,在当前发展可持续技术的背景下,它被认为是替代传统哈伯-博世工艺最有前途的方法之一。开发具有高选择性和稳定性的高效电催化剂是实现电化学氮还原反应(NRR)的关键。其中,P 区金属基电催化剂在 NRR 中具有重要的应用潜力,因为它与 N 2p 轨道具有很强的相互作用。因此,它为 NRR 向 NH 提供了良好的选择性。P 区金属基催化剂的费米能级附近的态密度(DOS)集中,表明 P 区金属作为活性位点具有通过提供 p 电子吸附和激活 N 的能力。在这项工作中,我们系统地综述了 P 区金属基电催化剂在电化学 NRR 中的最新进展。讨论了 P 区金属基电催化剂对 NRR 活性、选择性和稳定性的影响。具体来说,揭示了催化剂设计、电催化剂活性位点的本质以及一些提高 NRR 性能的策略、反应机制以及操作条件的影响。最后,提出了使用 P 区金属基电催化剂的一些挑战和展望。

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