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用于高选择性电催化亚硝酸盐还原制氨的非常规相合金纳米分支的可控合成

Controlled Synthesis of Unconventional Phase Alloy Nanobranches for Highly Selective Electrocatalytic Nitrite Reduction to Ammonia.

作者信息

Wang Yunhao, Xiong Yuecheng, Sun Mingzi, Zhou Jingwen, Hao Fengkun, Zhang Qinghua, Ye Chenliang, Wang Xixi, Xu Zhihang, Wa Qingbo, Liu Fu, Meng Xiang, Wang Juan, Lu Pengyi, Ma Yangbo, Yin Jinwen, Zhu Ye, Chu Shengqi, Huang Bolong, Gu Lin, Fan Zhanxi

机构信息

Department of Chemistry, City University of Hong Kong, Kowloon, Hong Kong, 999077, China.

Hong Kong Branch of National Precious Metals Material Engineering Research Center (NPMM), City University of Hong Kong, Kowloon, Hong Kong, 999077, China.

出版信息

Angew Chem Int Ed Engl. 2024 Jun 21;63(26):e202402841. doi: 10.1002/anie.202402841. Epub 2024 May 24.

Abstract

The controlled synthesis of metal nanomaterials with unconventional phases is of significant importance to develop high-performance catalysts for various applications. However, it remains challenging to modulate the atomic arrangements of metal nanomaterials, especially the alloy nanostructures that involve different metals with distinct redox potentials. Here we report the general one-pot synthesis of IrNi, IrRhNi and IrFeNi alloy nanobranches with unconventional hexagonal close-packed (hcp) phase. Notably, the as-synthesized hcp IrNi nanobranches demonstrate excellent catalytic performance towards electrochemical nitrite reduction reaction (NORR), with superior NH Faradaic efficiency and yield rate of 98.2 % and 34.6 mg h mg (75.5 mg h mg ) at 0 and -0.1 V (vs reversible hydrogen electrode), respectively. Ex/in situ characterizations and theoretical calculations reveal that the Ir-Ni interactions within hcp IrNi alloy improve electron transfer to benefit both nitrite activation and active hydrogen generation, leading to a stronger reaction trend of NORR by greatly reducing energy barriers of rate-determining step.

摘要

可控合成具有非常规相的金属纳米材料对于开发适用于各种应用的高性能催化剂具有重要意义。然而,调控金属纳米材料的原子排列仍然具有挑战性,尤其是对于涉及具有不同氧化还原电位的不同金属的合金纳米结构而言。在此,我们报道了具有非常规六方密堆积(hcp)相的IrNi、IrRhNi和IrFeNi合金纳米分支的通用一锅法合成。值得注意的是,所合成的hcp IrNi纳米分支对电化学亚硝酸盐还原反应(NORR)表现出优异的催化性能,在0和 -0.1 V(相对于可逆氢电极)下,NH法拉第效率和产率分别高达98.2%和34.6 mg h mg (75.5 mg h mg )。原位/非原位表征和理论计算表明,hcp IrNi合金中的Ir-Ni相互作用改善了电子转移,有利于亚硝酸盐活化和活性氢生成,通过大幅降低速率决定步骤的能垒,导致NORR具有更强的反应趋势。

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