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A Microporous Titanium Metal-Organic Framework with Double Nanotraps for Record CH4/N2 Separation

  • Puxu Liu
  • , Longlong Fan
  • , Jianhui Li
  • , Zhenduo Wu
  • , Yong Wang
  • , Yang Chen
  • , Junkuo Gao
  • , Jiangfeng Yang
  • , Jinping Li
  • , Banglin Chen
  • , Libo Li*
  • *Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    Reining in global warming has been an international priority, and mitigation targets post-2020 set at the 21st Conference of the Parties (COP21) urge that measures be taken. To significantly increase the utilization efficiency of unconventional natural gas and curtail its effect on global warming, we herein report a titanium metal-organic framework adsorbent with double nanotraps featuring superior CH4 uptake (1.37 mmol/g) and a high CH4/N2 selectivity (21.6-12.0) at 298 K up to 1 bar. The strong CH4 confinement of the nanotraps is observed and unveiled using neutron powder diffraction studies and density functional theory calculations. Breakthrough experiments on equimolar CH4/N2 mixtures confirm that CH4 could be efficiently enriched with a record productivity (13.1 L/kg) through a single separation operation, demonstrating the promising application potential of this microporous material for unconventional natural gas enrichment in industry. © 2024 American Chemical Society.
    Original languageEnglish
    Pages (from-to)2925-2932
    JournalChemistry of Materials
    Volume36
    Issue number6
    Online published13 Mar 2024
    DOIs
    Publication statusPublished - 26 Mar 2024

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