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金属间单原子合金 In-Pd 双烯用于硝酸盐中性电化学合成氨。

Intermetallic Single-Atom Alloy In-Pd Bimetallene for Neutral Electrosynthesis of Ammonia from Nitrate.

机构信息

Materials Science and Engineering Program and Walker Department of Mechanical Engineering, The University of Texas at Austin, Austin, Texas 78712, United States.

X-ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont, Illinois 60439, United States.

出版信息

J Am Chem Soc. 2023 Jun 28;145(25):13957-13967. doi: 10.1021/jacs.3c03432. Epub 2023 Jun 19.

Abstract

Harvesting recyclable ammonia (NH) from the electrocatalytic reduction of nitrate (NORR) offers a sustainable strategy to close the ecological nitrogen cycle from nitration contamination in an energy-efficient and environmentally friendly manner. The emerging intermetallic single-atom alloys (ISAAs) are recognized to achieve the highest site density of single atoms by isolating contiguous metal atoms into single sites stabilized by another metal within the intermetallic structure, which holds promise to couple the catalytic benefits from intermetallic nanocrystals and single-atom catalysts for promoting NORR. Herein, ISAA In-Pd bimetallene, in which the Pd single atoms are isolated by surrounding In atoms, is reported to boost neutral NORR with a NH Faradaic efficiency (FE) of 87.2%, a yield rate of 28.06 mg h mg, and an exceptional electrocatalytic stability with increased activity/selectivity over 100 h and 20 cycles. The ISAA structure induces substantially diminished overlap of Pd d-orbitals and narrowed p-d hybridization of In-p and Pd-d states around the Fermi level, resulting in a stronger NO adsorption and a depressed energy barrier of the potential-determining step for NORR. Further integrating the NORR catalyst into a Zn-NO flow battery as the cathode delivers a power density of 12.64 mW cm and a FE of 93.4% for NH production.

摘要

从硝酸盐的电催化还原中回收可循环利用的氨 (NH) 提供了一种可持续的策略,以节能和环保的方式从硝化污染中关闭生态氮循环。新兴的金属间单原子合金 (ISAAs) 通过将相邻的金属原子隔离到由金属间结构中的另一种金属稳定的单个位中,从而实现单个原子的最高位密度,这有望结合金属间纳米晶体和单原子催化剂的催化优势,促进 NORR。在此,报告了由周围的 In 原子隔离的 Pd 单原子的 ISAA In-Pd 双金属烯,它能以 87.2%的 NH 法拉第效率 (FE)、28.06mg h mg 的产率速率和超过 100 小时和 20 个循环的出色电催化稳定性来促进中性 NORR。ISA 结构导致 Pd d 轨道的重叠大大减少,费米能级周围的 In-p 和 Pd-d 态的 p-d 杂化变窄,从而导致更强的 NO 吸附和降低 NORR 的势决定步骤的能量势垒。进一步将 NORR 催化剂集成到 Zn-NO 流动电池作为阴极,可提供 12.64mW cm 的功率密度和 93.4%的 NH 产率的 FE。

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