解锁可见光光催化OWS通过通过化进行表面障碍工程双基复合氧化物通过化
Wenjian Fang1,2, Yang Yang1, Qihong Lu1
1School of Electrical and Energy Power Engineering, Yangzhou University, Yangzhou 225002, China.
Inorganic chemistry
|November 24, 2023
概括
表面化增强BiYVO4可见光水分的作用. 这种新的方法改善了光催化活性,并且适用于其他基于木的氧化物.
科学领域:
- 材料科学 材料科学 材料科学
- 光催化作用的光催化
- 表面化学 表面化学
背景情况:
- 半导体的表面干扰可以缩小能量带间隙.
- 化减少是一种用于表面原子排列破坏的常见方法.
- 现有的表面修改方法往往侧重于缩小带隙,而不是扩大.
研究的目的:
- 引入一种新的表面化方法,用于半导体中可见光的吸收.
- 研究表面化对BiYVO4.4能量波段结构的影响.
- 探索这种方法在可见光光催化整体水分的应用.
主要方法:
- BiYVO4的表面化是通过在气氛下用二酸 (NaH2PO2) 化而实现的.
- 对经处理的BiYVO4进行表征,以确认表面变化和评估光学特性.
- 对可见光下整体水分化的光催化活性进行评估.
主要成果:
- 表面化处理成功诱导了BiYVO4.4中明显的可见光吸收.
- 能量带结构被提升,增强可见光光催化活性.
- 经过处理的BiYVO4显示出高效的可见光光催化整体水分.
- 表面化方法被证明是基于Bi的复合氧化物的通用方法.
结论:
- 表面化是一种有效的策略,可以实现可见光吸收并增强半导体中的光催化活性.
- 开发的方法使可见光光催化整体水分解使用修改BiYVO4.4的方法.
- 这种表面化技术为改善基于Bi的复合氧化物提供了一种多功能方法.
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