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Internal electric field-modulated dual S-scheme ZnO@Co3O4/CsPbBr3 nanocages for highly active and selective photocatalytic CO2 reduction
2024-07
发表期刊JOURNAL OF CATALYSIS (IF:6.5[JCR-2023],7.0[5-Year])
ISSN0021-9517
EISSN1090-2694
卷号435
发表状态已发表
DOI10.1016/j.jcat.2024.115574
摘要

The rational design of a step-scheme (S-scheme) heterojunction with strong internal electric field (IEF) and high redox capacity is a promising strategy for photocatalytic CO2 reduction reaction (CO2RR). However, the precise process of charge transport on the multi-interfaces remains a great challenge. Herein, a dual S-scheme heterojunction constructed in the ZnO@Co3O4/CsPbBr3 hierarchical nanocage was prepared for enhancing CO2RR activity. Without sacrificial agent and photosensitizer, the optimal photocatalyst exhibits a competitive CH4 yield rate of 238.8 μmol g−1h−1 with high selectivity (90.9%), affording an apparent quantum efficiency of 4.6 % at 400 nm, outperforming most previously comparable photocatalysts. In situ X-ray photoelectron spectroscopy (in situ XPS), photoelectrochemical measurement and theoretical calculation verifies the dual S-schematic charge-transport pathway. The remarkably improved performance in CO2RR is due to the rapid charge separation through O-Co-Br bridge driven by the strong internal electric field. This research furnishes a new insight to reveal dynamic charge transfer mechanism for CO2 conversion applications. © 2024 Elsevier Inc.

关键词Bromine compounds Carbon dioxide Electric fields Heterojunctions II-VI semiconductors Organic polymers Organometallics Photocatalytic activity Photosensitizers X ray photoelectron spectroscopy Zinc oxide CO 2 reduction Dual step-scheme Internal electric fields Metalorganic frameworks (MOFs) Nanocages Photo-catalytic Photocatalytic CO2 reduction Rational design Reaction activity Reduction reaction
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收录类别EI ; SCI
语种英语
资助项目National Natural Science Foundation of China["22372013","22278042","11227902"] ; National Key R & D Program of China[2022YFA1503802]
WOS研究方向Chemistry ; Engineering
WOS类目Chemistry, Physical ; Engineering, Chemical
WOS记录号WOS:001246945300001
出版者Academic Press Inc.
EI入藏号20242216172560
EI主题词Charge transfer
EI分类号701.1 Electricity: Basic Concepts and Phenomena ; 712.1 Semiconducting Materials ; 714.2 Semiconductor Devices and Integrated Circuits ; 741.1 Light/Optics ; 801.4 Physical Chemistry ; 802.2 Chemical Reactions ; 804.1 Organic Compounds ; 804.2 Inorganic Compounds ; 815.1.1 Organic Polymers
原始文献类型Journal article (JA)
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/381423
专题物质科学与技术学院
大科学中心_PI研究组_刘志组
物质科学与技术学院_博士生
通讯作者Liu, Jiangchuan; Liu, Zhi
作者单位
1.Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, CNPC-CZU Innovation Alliance, School of Petrochemical Engineering, Changzhou University, Changzhou; 213164, China
2.Center for Transformative Science, Shanghai High Repetition Rate XFEL and Extreme Light Facility (SHINE), Shanghai Tech University, Shanghai; 201210, China
3.School of Physical Science and Technology, Shanghai Tech University, Shanghai; 201210, China
4.School of Materials Science & Engineering, Changzhou University, Jiangsu, Changzhou; 213164, China
通讯作者单位上海科技大学;  物质科学与技术学院
推荐引用方式
GB/T 7714
Fan, Jingshan,Peng, Zheng,Cai, Jun,et al. Internal electric field-modulated dual S-scheme ZnO@Co3O4/CsPbBr3 nanocages for highly active and selective photocatalytic CO2 reduction[J]. JOURNAL OF CATALYSIS,2024,435.
APA Fan, Jingshan.,Peng, Zheng.,Cai, Jun.,Liu, Jiangchuan.,Liu, Changhai.,...&Liang, Qian.(2024).Internal electric field-modulated dual S-scheme ZnO@Co3O4/CsPbBr3 nanocages for highly active and selective photocatalytic CO2 reduction.JOURNAL OF CATALYSIS,435.
MLA Fan, Jingshan,et al."Internal electric field-modulated dual S-scheme ZnO@Co3O4/CsPbBr3 nanocages for highly active and selective photocatalytic CO2 reduction".JOURNAL OF CATALYSIS 435(2024).
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