欧姆接触
材料科学
纳米笼
光催化
异质结
空位缺陷
费米能级
电场
制氢
氢
半导体
化学物理
电子
光电子学
纳米技术
化学
结晶学
催化作用
生物化学
物理
图层(电子)
量子力学
有机化学
作者
Yi-lei Li,Xu-jia Liu,Yun-biao Wang,Ying Liu,Rui‐hong Liu,Hui-Ying Mu,Ying‐juan Hao,Xiaojing Wang,Fa‐tang Li
标识
DOI:10.1016/j.gee.2023.12.007
摘要
Adjusting the interfacial transport efficiency of photogenerated electrons and the free energy of hydrogen adsorption through interface engineering is an effective means of improving the photocatalytic activity of semiconductor photocatalysts. Herein, hollow ZnS/NiS nanocages with ohmic contacts containing Zn vacancy (VZn-ZnS/NiS) are synthesized using ZIF-8 as templates. An internal electric field is constructed by Fermi level flattening to form ohmic contacts, which increase donor density and accelerate electron transport at the VZn-ZnS/NiS interface. The experimental and DFT results show that the tight interface and VZn can rearrange electrons, resulting in a higher charge density at the interface, and optimizing the Gibbs free energy of hydrogen adsorption. The optimal hydrogen production activity of VZn-ZnS/NiS is 10636 μmol h-1 g-1, which is 31.9 times that of VZn-ZnS. This study provides an idea for constructing sulfide heterojunctions with ohmic contacts and defects to achieve efficient photocatalytic hydrogen production.
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