Abstract
Understanding and control of the spatiotemporal stimuli-responsiveness of flexible metal-organic frameworks are crucial for the development of novel adsorbents for gas storage and separation technologies. Herein, we report two isostructural pillared-layer dynamic frameworks differing only in one atom that bridge a benzenocarboxylate linker. Through a synthetic approach, we switch the stepwise CO2-induced transformation into a continuous one. Our findings are proved by equilibrium and time-resolved in situ powder X-ray diffraction collected during CO2 adsorption at 195 K. Finally, we use high-pressure single and multi-gas adsorption experiments to show the superiority of continuous breathing in CH4 storage and CH4/CO2 separation at 298 K. This report demonstrates that the desirable mechanism of flexible frameworks can be readily achieved through single-atom exchange enabling efficient gas separation and storage.
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CITATION STYLE
Roztocki, K., Sobczak, S., Smaruj, A., Walczak, A., Gołdyn, M., Bon, V., … Stefankiewicz, A. R. (2023). Tuning the guest-induced spatiotemporal response of isostructural dynamic frameworks towards efficient gas separation and storage. Journal of Materials Chemistry A, 11(35), 18646–18650. https://doi.org/10.1039/d3ta02167j
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