Wang Jing-Zhou, Zhou Zhong-Shu, Dai Yong-Jie, Zhou Jian-Ping, Lv Xiao-Gong
School of Physics and Information Technology, Shaanxi Normal University, Xi'an 710119, People's Republic of China.
Department of Physics and Electronic Engineering, Yuncheng University, Yuncheng 044000, People's Republic of China.
Nanotechnology. 2021 Jan 8;32(2):025712. doi: 10.1088/1361-6528/abba9a.
SnS/NaMgTiO (SNMTO) composite photocatalyst was synthesized by a hydrothermal method. The chemical combination in lattice scale between SnS and NaMgTiO (NMTO) was observed by high-resolution transmission electron microscopy, indicating that heterojunctions were obtained between SnS and NMTO. The photocatalytic activity of SNMTO heterojunctions was improved in comparison with that of pure NMTO and SnS for the photocatalytic degradation of methylene blue and Rhodamine B. Electrons were excited in n-type semiconductors NMTO and SnS under light illumination, and a part of them moved to the interface, determined with the surface potential reduction observed directly by Kelvin probe force microscopy. The charge redistribution in the composite illustrates a high density of interface states between SnS and NMTO, which attract lots of photoelectrons, as a result enhancing the photocatalytic performance. This finding is very different from the speculation that the photogenerated electrons and holes migrate from one part to another because it is difficult for charge carriers to travel through the interface with high energy.
采用水热法合成了SnS/NaMgTiO(SNMTO)复合光催化剂。通过高分辨率透射电子显微镜观察到SnS与NaMgTiO(NMTO)在晶格尺度上的化学结合,表明在SnS与NMTO之间形成了异质结。与纯NMTO和SnS相比,SNMTO异质结对亚甲基蓝和罗丹明B的光催化降解活性有所提高。在光照下,n型半导体NMTO和SnS中的电子被激发,其中一部分电子移动到界面,这是通过开尔文探针力显微镜直接观察到的表面电势降低来确定的。复合材料中的电荷重新分布表明SnS与NMTO之间存在高密度的界面态,这些界面态吸引了大量光电子,从而提高了光催化性能。这一发现与光生电子和空穴从一部分迁移到另一部分的推测有很大不同,因为电荷载流子很难通过高能界面移动。