材料科学
合理设计
催化作用
合金
电化学
纳米技术
格子(音乐)
动力学
机制(生物学)
化学物理
晶体结构
设计要素和原则
工作(物理)
调制(音乐)
电子结构
电催化剂
化学工程
量子
电极
材料设计
原位
电子能带结构
自组装
作者
D. Liu,Yongjie Deng,Xiaozhi Zhang,Haiwei Yang,Yufei He,Xinqiang Wang,Wengang Cui,Jin Zhou,Hongge Pan,Renbing Wu
摘要
With cocktail effect from the special synergism of multiple components, high-entropy alloys (HEAs) catalysts are increasingly being investigated to address the sluggish kinetics of electrochemical conversion processes. However, the origin of the cocktail effect and how it affects the catalytic performance is elusive and poorly understood due to complicated interaction between each component. Herein, we decouple the cocktail effect into lattice and coordination two main aspects in HEAs for HER catalysis. Flexible quantum theoretical methods coupled with in situ spectra investigations disclose that the lattice effect contributes to a coarse modulation with a larger tuning range through modification of 3d band structures in active sites, while coordination effect functions as a fine tailor to further optimize electronic structure by adjusting electron occupancy in 3d bands. This work elucidates the intrinsic origin of the cocktail effect in HEAs, providing a guideline for the rational design of catalysts targeting extraordinary properties.
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