Coordination Desymmetrization of Copper Single-Atom Catalyst for Efficient Nitrate Reduction

Zhengxiang Gu, Yechuan Zhang, Yang Fu, Dandan Hu, Fang Peng, Yawen Tang, Huajun Yang
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Abstract

Coordination engineering strategy for optimizing the catalytic performance of single-atom catalysts (SACs) has been rapidly developed over the last decade. However, previous reports on copper SACs for nitrate reduction reactions (NO3RR) have mostly focused on symmetric coordination configurations such as Cu-N4 and Cu-N3. In addition, the mechanism in terms of the regulation of coordination environment and catalytic properties of SACs has not been well demonstrated. Herein, we disrupted the local symmetric structure of copper atoms by introducing unsaturated heteroatomic coordination of Cu−O and Cu−N to achieve the coordination desymmetrization of Cu-N1O2 SACs. The Cu-N1O2 SACs exhibit an efficient nitrate-to-ammonia conversion with a high FE of ~96.5 % and a yield rate of 3120 μg NH3 h−1 cm−2 at −0.60 V vs RHE. As indicated by in situ Raman spectra, the catalysts facilitate the accumulation of NO3 and the selective adsorption of *NO2, which were further confirmed by the theoretical study of surface dipole moment and orbital hybridization. Our work illustrated the correlation between the coordination desymmetrization and the catalytic performance of copper SACs for NO3RR.

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用于高效硝酸盐还原的单原子铜催化剂的配位非对称化
过去十年间,用于优化单原子催化剂(SAC)催化性能的配位工程策略得到了快速发展。然而,以往有关铜配位工程催化剂用于硝酸盐还原反应(NO3RR)的报道大多集中在 Cu-N4 和 Cu-N3 等对称配位构型上。此外,SACs 的配位环境调控机制和催化特性也没有得到很好的证实。在此,我们通过引入 Cu-O 和 Cu-N 的不饱和杂原子配位,破坏了铜原子的局部对称结构,实现了 Cu-N1O2 SACs 的配位非对称化。Cu-N1O2 SACs 显示出高效的硝酸-氨转化率,在 -0.60 V vs RHE 条件下,FE 高达约 96.5 %,产率为 3120 μg NH3 h-1 cm-2。正如原位拉曼光谱所示,催化剂促进了 NO3- 的积累和 *NO2 的选择性吸附,表面偶极矩和轨道杂化的理论研究进一步证实了这一点。我们的工作说明了配位非对称性与铜 SACs 催化 NO3RR 性能之间的相关性。
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Angewandte Chemie
Angewandte Chemie 化学科学, 有机化学, 有机合成
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