返回
Classification and Characterization Methods for Heterojunctions
DOI:10.1002/admi.202500191.png)
摘要
En 中文
异质结结构通常用于促进光生载流子的分离并提高光催化活性。然而,当前研究中常出现误用和混淆,因为异质结的分类和命名缺乏统一规则。为避免此问题,本文综述并标准化了异质结的分类和命名规则,基于两种半导体在异质结中的能带结构分布及光生载流子的传输路径。此外,本文还清晰阐述了II型异质结中O–scheme异质结、Z–scheme异质结和S–scheme异质结的光生载流子行为差异。另外,总结了当前用于识别异质结类型的方法,包括金属离子光沉积、原位X射线光电子能谱、表面光电压谱、瞬态吸收光谱和阴极荧光光谱法。本文还强调了不同类型异质结在不同光催化应用中的适用性,并提出了异质结研究的未来方向。
Keyword:
heterojunction classification
S–scheme heterojunction
type II heterojunction
Z–scheme heterojunction
期刊
IF:
4.4
论文数:
6.7K
被引数:
2.4W
机构
引用论文
Boosting Hydrogen Evolution Performance of a CdS-Based Photocatalyst: In Situ Transition from Type I to Type II Heterojunction during Photocatalysis
ACS CATALYSIS
IF13.1
Photocatalytic conversion of CO2 using earth-abundant catalysts: A review on mechanism and catalytic performance地球上丰富的催化剂光催化转化CO2: 机理和催化性能综述
Enhanced photocatalytic hydrogen evolution from organic semiconductor heterojunction nanoparticles有机半导体异质结纳米颗粒的增强光催化析氢
NATURE MATERIALS
IF38.5
Electrospinning Photocatalysis Meet In Situ Irradiated XPS: Recent Mechanisms Advances and Challenges静电纺丝光催化遇到原位辐照XPS: 最新机制进展和挑战
SMALL
IF12.1
Photocatalytic degradation of GenX in water using a new adsorptive photocatalyst
WATER RESEARCH
IF12.4
Dual MOFs template-directed fabrication of hollow-structured heterojunction photocatalysts for efficient CO2 reduction双MOFs模板定向制备中空结构异质结光催化剂用于高效CO2还原

