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Computational Prediction of Stacking Mode in Conductive Two-Dimensional Metal-Organic Frameworks: An Exploration of Chemical and Electrical Property Changes

Title
Computational Prediction of Stacking Mode in Conductive Two-Dimensional Metal-Organic Frameworks: An Exploration of Chemical and Electrical Property Changes
Authors
Jeon M.Kim M.Lee J.-S.Kim H.Choi S.-J.Moon H.R.Kim J.
Ewha Authors
문회리
SCOPUS Author ID
문회리scopus
Issue Date
2023
Journal Title
ACS Sensors
ISSN
2379-3694JCR Link
Citation
ACS Sensors vol. 8, no. 8, pp. 3068 - 3075
Keywords
band structurechemical propertyelectrical propertyhost−guest interactionmetal−organic frameworkpotential energy surface mapstacking modetwo-dimensional
Publisher
American Chemical Society
Indexed
SCIE; SCOPUS scopus
Document Type
Article
Abstract
Conductive two-dimensional metal-organic frameworks (2D MOFs) have attracted interest as they induce strong charge delocalization and improve charge carrier mobility and concentration. However, characterizing their stacking mode depends on expensive and time-consuming experimental measurements. Here, we construct a potential energy surface (PES) map database for 36 2D MOFs using density functional theory (DFT) for the experimentally synthesized and non-synthesized 2D MOFs to predict their stacking mode. The DFT PES results successfully predict the experimentally synthesized stacking mode with an accuracy of 92.9% and explain the coexistence mechanism of dual stacking modes in a single compound. Furthermore, we analyze the chemical (i.e., host-guest interaction) and electrical (i.e., electronic structure) property changes affected by stacking mode. The DFT results show that the host-guest interaction can be enhanced by the transition from AA to AB stacking, taking H2S gas as a case study. The electronic band structure calculation confirms that as AB stacking displacement increases, the in-plane charge transport pathway is reduced while the out-of-plane charge transport pathway is maintained or even increased. These results indicate that there is a trade-off between chemical and electrical properties in accordance with the stacking mode. © 2023 American Chemical Society
DOI
10.1021/acssensors.3c00715
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자연과학대학 > 화학·나노과학전공 > Journal papers
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