正交晶系
杂原子
空位缺陷
二硒醚
过渡金属
晶体结构
结晶学
钴
化学物理
材料科学
相(物质)
化学
电子结构
相变
催化作用
无机化学
纳米技术
兴奋剂
计算化学
凝聚态物理
有机化学
硒
物理
光电子学
戒指(化学)
作者
Yiqiang Sun,Xiuling Li,Tao Zhang,Kun Xu,Yisong Yang,Guozhu Chen,Cuncheng Li,Yi Xie
标识
DOI:10.1002/anie.202109116
摘要
Abstract The introduction of heteroatoms is one of the most important ways to modulate the intrinsic electronic structure of electrocatalysts to improve their catalytic activity. However, for transition metal chalcogenides with highly symmetric crystal structure (HS‐TMC), the introduction of heteroatoms, especially those with large atomic radius, often induces large lattice distortion and vacancy defects, which may lead to structural phase transition of doped materials or structural phase reconstruction during the catalytic reaction. Such unpredictable situations will make it difficult to explore the connection between the intrinsic electronic structure of doped catalysts and catalytic activity. Herein, taking thermodynamically stable cubic CoSe 2 phase as an example, we demonstrate that nitrogen incorporation can effectively regulate the intrinsic electronic structure of HS‐TMC with structural phase stability and thus promote its electrocatalytic activity for the hydrogen evolution activity (HER). In contrast, the introduction of phosphorus can lead to structural phase transition from cubic CoSe 2 to orthorhombic phase, and the structural phase of phosphorus‐doped CoSe 2 is unstable for HER.
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