Linker Chlorination Enhances Xe Adsorption and Xe/Kr Separation in Metal–Organic Frameworks

Abstract Efficient separation of Xe/Kr mixture remains a challenge, due to their chemical inertness and the striking similarity of their physicochemical properties. In this work, the chlorine-decorated metal–organic framework (MOF) of JXNU-24(Cl) and its pristine JXNU-24 are presented for Xe/Kr separation. The chlorine-functionalized framework with a more polar pore microenvironment exhibits a stronger binding affinity toward Xe. Consequently, JXNU-24(Cl) exhibits a Xe/Kr adsorption selectivity of 10.3 and outstanding separation performance with a high productivity of 184 L kg–1 for high-purity Kr (>99.9%). Computational simulations reveal that the presence of chlorine substituents generates polar pore surfaces, which preferentially interact with the more polarizable Xe molecules, thereby enhancing Xe-framework interactions and Xe/Kr selectivity for JXNU-24(Cl). This work achieves preferential Xe recognition via framework polarity modulation and offers an effective molecular design strategy for constructing MOFs for efficient Xe/Kr separation.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-10-06
DOI
https://doi.org/10.1021/acs.inorgchem.6c04424
Primary Topic
Metal-Organic Frameworks: Synthesis and Applications
Type
article
Field-Weighted Citation Impact
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article

Linker Chlorination Enhances Xe Adsorption and Xe/Kr Separation in Metal–Organic Frameworks

Qing‐Yan Liu, Hui‐Ping Xiao, Yue Wang, Junmin Chen et al.
Inorganic Chemistry
Metal-Organic Frameworks: Synthesis and Applications
article

Linker Chlorination Enhances Xe Adsorption and Xe/Kr Separation in Metal–Organic Frameworks

Qing‐Yan Liu, Hui‐Ping Xiao, Yue Wang, Junmin Chen, Hui‐Fang Ma, Wen-Rou Yu
article en

Abstract

Abstract Efficient separation of Xe/Kr mixture remains a challenge, due to their chemical inertness and the striking similarity of their physicochemical properties. In this work, the chlorine-decorated metal–organic framework (MOF) of JXNU-24(Cl) and its pristine JXNU-24 are presented for Xe/Kr separation. The chlorine-functionalized framework with a more polar pore microenvironment exhibits a stronger binding affinity toward Xe. Consequently, JXNU-24(Cl) exhibits a Xe/Kr adsorption selectivity of 10.3 and outstanding separation performance with a high productivity of 184 L kg–1 for high-purity Kr (>99.9%). Computational simulations reveal that the presence of chlorine substituents generates polar pore surfaces, which preferentially interact with the more polarizable Xe molecules, thereby enhancing Xe-framework interactions and Xe/Kr selectivity for JXNU-24(Cl). This work achieves preferential Xe recognition via framework polarity modulation and offers an effective molecular design strategy for constructing MOFs for efficient Xe/Kr separation.

Inorganic Chemistry
Wuyi University (CN), Jiangxi Normal University (CN), Wuyi University (CN)
Openalex Percentile: Top 27%
Metal-Organic Frameworks: Synthesis and Applications
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