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Oxygen-Bridged Indium-Nickel Atomic Pair as Dual-Metal Active Sites Enabling Synergistic Electrocatalytic CO2 Reduction
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-12-15 , DOI: 10.1002/anie.202216326 Zhaozhong Fan 1 , Ruichun Luo 2, 3 , Yanxue Zhang 4 , Bo Zhang 1 , Panlong Zhai 1 , Yanting Zhang 1 , Chen Wang 1 , Junfeng Gao 4 , Wu Zhou 2, 3 , Licheng Sun 5, 6 , Jungang Hou 1
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-12-15 , DOI: 10.1002/anie.202216326 Zhaozhong Fan 1 , Ruichun Luo 2, 3 , Yanxue Zhang 4 , Bo Zhang 1 , Panlong Zhai 1 , Yanting Zhang 1 , Chen Wang 1 , Junfeng Gao 4 , Wu Zhou 2, 3 , Licheng Sun 5, 6 , Jungang Hou 1
Affiliation
An atomically dispersed heteronuclear dual-site catalyst with an axial oxygen atom bridged In-N6-Ni moiety anchored on nitrogenated carbon for InNi diatomic sites synergistically accelerating reaction kinetics of electrochemical CO2 reduction.
中文翻译:
氧桥接铟镍原子对作为双金属活性位点实现协同电催化 CO2 还原
一种原子分散的异核双中心催化剂,具有轴向氧原子桥接的 In-N 6 -Ni 部分,锚定在氮化碳上,用于 InNi 双原子位点,协同加速电化学 CO 2还原的反应动力学。
更新日期:2022-12-15
中文翻译:
氧桥接铟镍原子对作为双金属活性位点实现协同电催化 CO2 还原
一种原子分散的异核双中心催化剂,具有轴向氧原子桥接的 In-N 6 -Ni 部分,锚定在氮化碳上,用于 InNi 双原子位点,协同加速电化学 CO 2还原的反应动力学。