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  4. Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer
 
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2023
Journal Article
Title

Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer

Abstract
Heterogeneous reactions associated with porous solid films are ubiquitous and play an important role in both nature and industrial processes. However, due to the no-slip boundary condition in pressure-driven flows, the interfacial mass transfer between the porous solid surface and the environment is largely limited to slow molecular diffusion, which severely hinders the enhancement of heterogeneous reaction kinetics. Herein, we report a hierarchical-structure-accelerated interfacial dynamic strategy to improve interfacial gas transfer on hierarchical conductive metal-organic framework (c-MOF) films. Hierarchical c-MOF films are synthesized via the in-situ transformation of insulating MOF film precursors using π-conjugated ligands and comprise both a nanoporous shell and hollow inner voids. The introduction of hollow structures in the c-MOF films enables an increase of gas permeability, thus enhancing the motion velocity of gas molecules toward the c-MOF film surface, which is more than 8.0-fold higher than that of bulk-type film. The c-MOF film-based chemiresistive sensor exhibits a faster response towards ammonia than other reported chemiresistive ammonia sensors at room temperature and a response speed 10 times faster than that of the bulk-type film.
Author(s)
Huang, Chuanhui
TU Dresden  
Shang, Xinglong
Zhejiang University
Zhou, Xinyuan
Tianjin University  
Zhang, Zhe
TU Dresden  
Huang, Xing
TU Dresden  
Lu, Yang
TU Dresden  
Wang, Mingchao
TU Dresden  
Löffler, Markus
TU Dresden  
Liao, Zhongquan  
Fraunhofer-Institut für Keramische Technologien und Systeme IKTS  
Qi, Haoyuan
TU Dresden  
Kaiser, Ute
Universität Ulm  
Schwarz, Dana
Leibniz-Institut für Polymerforschung -IPF-, Dresden  
Fery, Andreas
TU Dresden  
Wang, Tie
Tianjin University  
Mannsfeld, Stefan C. B.
TU Dresden  
Hu, Guoqing
Zhejiang University
Feng, Xinliang
TU Dresden  
Dong, Renhao
TU Dresden  
Journal
Nature Communications  
Project(s)
Graphene Flagship Core Project 3  
Chemie der synthetischen zweidimensionalen Materialien  
Development of Functional Conjugated Two-Dimensional Metal-Organic Frameworks  
Funding(s)
H2020-EU.1.2.  
H2020-EU.1.1.  
Funder
European Commission  
Deutsche Forschungsgemeinschaft -DFG-, Bonn  
European Commission  
Open Access
DOI
10.1038/s41467-023-39630-y
Additional full text version
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