Metal–organic frameworks for organic transformations by photocatalysis and photothermal catalysis
Changsha University of Science and Technology · University of Science and Technology of China · +2 more institutions
Abstract
Organic transformation by light-driven catalysis, especially, photocatalysis and photothermal catalysis, denoted as photo(thermal) catalysis, is an efficient, green, and economical route to produce value-added compounds. In recent years, owing to their diverse structure types, tunable pore sizes, and abundant active sites, metal-organic framework (MOF)-based photo(thermal) catalysis has attracted broad interest in organic transformations. In this review, we provide a comprehensive and systematic overview of MOF-based photo(thermal) catalysis for organic transformations. First, the general mechanisms, unique advantages, and strategies to improve the performance of MOFs in photo(thermal) catalysis are discussed.…
Citation impact
- FWCI
- 39.17
- Percentile
- 100%
- References
- 439
Authors
6- HJHong‐Guang JinCorresponding
Changsha University of Science and Technology
- PZPengcheng Zhao
Changsha University of Science and Technology
- YQYunyang Qian
University of Science and Technology of China, Hefei National Center for Physical Sciences at Nanoscale
- JXJuan‐Ding XiaoCorresponding
Anhui University
- ZCZi‐Sheng Chao
Changsha University of Science and Technology
Topics & keywords
- Photocatalysis
- Photothermal therapy
- Catalysis
- Metal-organic framework
- Nanotechnology
- Organic synthesis
- Rational design
- Chemistry
Funding
- NNNational Natural Science Foundation of ChinaAwards: U22A20401, 22205005, 22331009
- CAChinese Academy of SciencesAwards: XDB0450302, XDB0540000
- NSNatural Science Foundation of Hunan ProvinceAward: 2023JJ30010
- NKNational Key Research and Development Program of ChinaAward: 2021YFA1500400
- FRFundamental Research Funds for the Central UniversitiesAward: WK9990000137
- NKNational Key Research and Development Program of China Stem Cell and Translational ResearchAward: 2021YFA1500400