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Rational Design of Smart Metal-Organic Frameworks for Light-Modulated Gas Transport.

Pingying LiuZiqi TianLiang Chen
Published in: ACS applied materials & interfaces (2022)
Smart metal-organic frameworks (MOFs) are constructed by introducing stimuli-responsive functional groups into MOF platforms. Through membrane systems containing smart MOFs, external field-modulated gas transport can be achieved, which finds potential applications in chemical engineering. In this work, we design a series of Mg-MOF-74-III-based frameworks functionalized by arylazopyrazole groups. Methyleneamine chains with various lengths are attached to the photoresponsive azopyrazole moiety. Molecular dynamics simulations show that CO 2 diffusion can be remarkably changed by controlling the cis -to- trans isomerization of the functional unit due to the tunable adsorbate-adsorbent and adsorbate-adsorbate interactions of the two states. With the optimal length of the functional chain, the spatial hindrance and adsorbate-adsorbent interaction exhibit a synergetic effect to maximize the stimuli-responsive kinetic separation of N 2 over CO 2 . This work provides a promising strategy for elevating smart MOFs' potential in gas separation.
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