AIP Advances (Aug 2017)

The studies on gas adsorption properties of MIL-53 series MOFs materials

  • Yuqiu Jiao,
  • Zhenyu Li,
  • Yue Ma,
  • Guanggang Zhou,
  • Shuangxi Wang,
  • Guiwu Lu

DOI
https://doi.org/10.1063/1.4999914
Journal volume & issue
Vol. 7, no. 8
pp. 085009 – 085009-8

Abstract

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Molecular dynamics (MD), grand canonical Monte Carlo (GCMC) and ideal adsorbed solution theory (IAST) were used to study the structures and gas adsorption properties of MIL-53(M)[M=Cr, Fe, Sc, Al] metal organic framework (MOF) materials. The results show that the volumes of those MOF materials increase significantly at high temperature. By analyzing the adsorption isotherms, we found that the temperature had a paramount effect on the gas adsorption behaviors of these MOF materials. For MIL-53(Cr), the orders of the quantities of adsorbed gases were CH4>N2>CO2>H2S, CH4>H2S>CO2>N2 and CH4>CO2>H2S>N2 at 100K, 293K and 623K, respectively. We also calculated the adsorption of several combinations of two gases by MIL-53(Cr) at 293K, the results indicate that the material had selective adsorption of CH4 over CO2, H2S and N2. Our calculations provide microscopic insights into the gas adsorption performances of these MOFs and may further guide the practice of gas separation.