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Interaction in Confined Environment (ICE): A Composite Descriptor for Quantifying Guest-Host Interactions in MOFs
Yi Wang1, Yuhan Yang1, Zhongyi Jiang1,2
1School of Chemistry and Chemical Engineering, Collaborative Innovation Center of Ecological Civilization, Hainan University, Haikou 570228, China.
Abstract:
Guest-host interactions in confined environments are crucial for many chemical and physical processes, yet their quantitative representation in computations remains rarely reported. Here, we introduce a physically interpretable interaction in confined environment (ICE) descriptor to characterize guest-host interactions in metal-organic frameworks (MOFs). The descriptor is constructed by first identifying accessible sites through Voronoi analysis of the host framework, followed by the vectorial encoding of local interaction forces. The results reveal distinct mechanistic sensitivities: adsorption correlates with the integrated strength of interaction forces, whereas diffusion is more sensitive to the spatial distribution of the sites. Owing to its physical grounding and transferability, ICE provides a robust framework for modeling interaction-driven phenomena in confined environments and advancing data-driven material design.
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