Porous Functional Nanomaterials for Continuous Flow Catalysis
Yingguo Li, Hao Chen, Zhiyao Li, Minghao Liu, Mengmeng Fu, Xiaoyi Yue, Danfeng Jiang, Xiao Chen, Chao Yu, Wei Gong

TL;DR
This review explores how porous materials are used in continuous flow catalysis, comparing them to traditional batch reactors and highlighting future developments.
Contribution
The paper systematically categorizes and analyzes the latest advances in porous materials for continuous flow catalysis, emphasizing their design and application.
Findings
Porous materials like metal–organic frameworks and covalent organic frameworks are effective in continuous flow catalysis.
Challenges include precise control over structure and maintaining catalytic stability during scale-up.
The review outlines practical applications in selective catalysis, photocatalysis, and multistep reactions.
Abstract
This review provides a comprehensive summary of the latest advances in the application of porous materials in continuous flow catalysis.This review is categorized according to the properties of porous materials and also according to different continuous flow catalytic reactions.This review also examines the comparative advantages and disadvantages of batch reactors versus continuous flow reactors and discusses potential future developments in porous catalyst-based continuous flow systems. This review provides a comprehensive summary of the latest advances in the application of porous materials in continuous flow catalysis. This review is categorized according to the properties of porous materials and also according to different continuous flow catalytic reactions. This review also examines the comparative advantages and disadvantages of batch reactors versus continuous flow reactors…
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Taxonomy
TopicsInnovative Microfluidic and Catalytic Techniques Innovation · Covalent Organic Framework Applications · Metal-Organic Frameworks: Synthesis and Applications
