Thermally Activated Adsorption in Metal-Organic Frameworks with a Temperature-Tunable Diffusion Barrier Layer.

Angew Chem Int Ed Engl

Department of Physics and Center for Functional Materials, Wake Forest University, Winston-Salem, NC, 27109, USA.

Published: October 2020

AI Article Synopsis

  • Modification of metal-organic frameworks (MOFs) surfaces can enhance their ability to adsorb gases.
  • Researchers found that capping MOFs with ethylenediamine (EDA) helps retain small molecules at room temperature.
  • The study reveals a unique temperature-dependent mechanism that increases adsorption capacity when heated, indicating new ways to control selective adsorption in MOFs.

Article Abstract

Modification of the external surfaces of metal-organic frameworks offers a new level of control over their adsorption behavior. It was previously shown that capping of MOFs with ethylenediamine (EDA) can effectively retain small gaseous molecules at room temperature. Reported here is a temperature-induced variation in the capping-layer gate-opening mechanism through a combination of in situ infared experiments and ab initio simulations of the capping layer. An atypical acceleration and increase in the loading of weakly adsorbed molecules upon raising the temperature above room temperature is observed. These findings show the discovery of novel temperature-dependent kinetics that goes beyond standard kinetics and suggest a new avenue for tailoring selective adsorption by thermally tuning the surface barrier.

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Source
http://dx.doi.org/10.1002/anie.202007766DOI Listing

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