College of Chemistry, Tianjin Key Laboratory of Structure and Performance for Functional Molecules, Tianjin Normal University, Tianjin, 300387, China.
College of Material and Chemical Engineering, Institute of New Energy Science and Technology, School of Future Hydrogen Energy Technology, Zhengzhou University of Light Industry, Zhengzhou, 450001, China.
Adv Sci (Weinh). 2023 May;10(15):e2206933. doi: 10.1002/advs.202206933. Epub 2023 Mar 30.
Electrocatalytic nitrogen reduction reaction (NRR) represents a promising sustainable approach for NH synthesis. However, the poor NRR performance of electrocatalysts is a great challenge at this stage, mainly owing to their low activity and the competitive hydrogen evolution reaction (HER). Herein, 2D ferric covalent organic framework/MXene (COF-Fe/MXene) nanosheets with controllable hydrophobic behaviors are successfully prepared via a multiple-in-one synthetic strategy. The boosting hydrophobicity of COF-Fe/MXene can effectively repel water molecules to inhibit the HER for enhanced NRR performances. By virtue of the ultrathin nanostructure, well-defined single Fe sites, nitrogen enrichment effect, and high hydrophobicity, the 1H,1H,2H,2H-perfluorodecanethiol modified COF-Fe/MXene hybrid shows a NH yield of 41.8 µg h mg and a Faradaic efficiency of 43.1% at -0.5 V versus RHE in a 0.1 m Na SO water solution, which are vastly superior to the known Fe-based catalysts and even to the noble metal catalysts. This work provides a universal strategy to design and synthesis of non-precious metal electrocatalysts for high-efficiency N reduction to NH .
电催化氮还原反应 (NRR) 代表了一种很有前途的可持续合成 NH 的方法。然而,电催化剂的 NRR 性能较差是现阶段的一个巨大挑战,主要归因于其活性低和竞争的析氢反应 (HER)。在此,通过一种多合一的合成策略,成功制备了具有可控疏水性行为的二维铁共价有机骨架/MXene (COF-Fe/MXene) 纳米片。COF-Fe/MXene 疏水性的增强可以有效地排斥水分子,从而抑制 HER,以提高 NRR 性能。得益于超薄的纳米结构、明确的单铁位、氮富集效应和高疏水性,经 1H,1H,2H,2H-全氟癸硫醇修饰的 COF-Fe/MXene 杂化物在 0.1 m Na2SO4 水溶液中于 -0.5 V 对 RHE 时的 NH 产率为 41.8 µg h mg -1 ,法拉第效率为 43.1%,远优于已知的铁基催化剂,甚至优于贵金属催化剂。这项工作为设计和合成高效 NRR 至 NH 的非贵金属电催化剂提供了一种通用策略。