Tuning Active Metal Atomic Spacing by Filling of Light Atoms and Resulting Reversed Hydrogen Adsorption-Distance Relationship for Efficient Catalysis
Ding Chen Zonghua Pu Zongkui Kou Jun Yu Jinsong Wu Shichun Mu Ruihu Lu Ruohan Yu Hongyu Zhao Dulan Wu Youtao Yao Kesong Yu Jiawei Zhu Pengxia Ji
纳微快报(英文)2023,Vol.15Issue(10):151-162,12.
纳微快报(英文)2023,Vol.15Issue(10):151-162,12.DOI:10.1007/s40820-023-01142-1
Tuning Active Metal Atomic Spacing by Filling of Light Atoms and Resulting Reversed Hydrogen Adsorption-Distance Relationship for Efficient Catalysis
Tuning Active Metal Atomic Spacing by Filling of Light Atoms and Resulting Reversed Hydrogen Adsorption-Distance Relationship for Efficient Catalysis
摘要
关键词
Electrocatalysis/DFT calculation/Interstitial filling/Hydrogen evolution/Structure-activity relationshipsKey words
Electrocatalysis/DFT calculation/Interstitial filling/Hydrogen evolution/Structure-activity relationships引用本文复制引用
Ding Chen,Zonghua Pu,Zongkui Kou,Jun Yu,Jinsong Wu,Shichun Mu,Ruihu Lu,Ruohan Yu,Hongyu Zhao,Dulan Wu,Youtao Yao,Kesong Yu,Jiawei Zhu,Pengxia Ji..Tuning Active Metal Atomic Spacing by Filling of Light Atoms and Resulting Reversed Hydrogen Adsorption-Distance Relationship for Efficient Catalysis[J].纳微快报(英文),2023,15(10):151-162,12.基金项目
This work was financially sponsored by the National Natural Science Foundation of China(Grant Nos.22075223,22179104),the State Key Laboratory of Advanced Technology for Materials Synthesis and Processing(Wuhan Uni-versity of Technology)(2022-ZD-4).Open access funding provided by Shanghai Jiao Tong University. (Grant Nos.22075223,22179104)