Microenvironment Engineering of Heterogeneous Catalysts for Liquid-Phase Environmental Catalysis
The University of Adelaide · The University of Western Australia
Abstract
Environmental catalysis has emerged as a scientific frontier in mitigating water pollution and advancing circular chemistry and reaction microenvironment significantly influences the catalytic performance and efficiency. This review delves into microenvironment engineering within liquid-phase environmental catalysis, categorizing microenvironments into four scales: atom/molecule-level modulation, nano/microscale-confined structures, interface and surface regulation, and external field effects. Each category is analyzed for its unique characteristics and merits, emphasizing its potential to significantly enhance catalytic efficiency and selectivity. Following this overview, we introduced recent advancements in…
Citation impact
- FWCI
- 14.00
- Percentile
- 100%
- References
- 744
Authors
7Topics & keywords
- Chemistry
- Microscale chemistry
- Catalysis
- Biochemical engineering
- Nanotechnology
- Heterogeneous catalysis
- Chemical reaction engineering
- Chemical engineering