Advanced Strategies in Metal-Organic Frameworks for CO2 Capture and Separation

Chem Rec. 2022 Jul;22(7):e202100230. doi: 10.1002/tcr.202100230. Epub 2021 Nov 10.

Abstract

The continuous carbon dioxide (CO2 ) gas emissions associated with fossil fuel production, valorization, and utilization are serious challenges to the global environment. Therefore, several developments of CO2 capture, separation, transportation, storage, and valorization have been explored. Consequently, we documented a comprehensive review of the most advanced strategies adopted in metal-organic frameworks (MOFs) for CO2 capture and separation. The enhancements in CO2 capture and separation are generally achieved due to the chemistry of MOFs by controlling pore window, pore size, open-metal sites, acidity, chemical doping, post or pre-synthetic modifications. The chemistry of defects engineering, breathing in MOFs, functionalization in MOFs, hydrophobicity, and topology are the salient advanced strategies, recently reported in MOFs for CO2 capture and separation. Therefore, this review summarizes MOF materials' advancement explaining different strategies and their role in the CO2 mitigations. The study also provided useful insights into key areas for further investigations.

Keywords: Advanced materials; CO2; CO2 capture; CO2 separation; MOFs; Strategies.

Publication types

  • Review

MeSH terms

  • Adsorption
  • Carbon Dioxide
  • Metal-Organic Frameworks*
  • Metals

Substances

  • Metal-Organic Frameworks
  • Metals
  • Carbon Dioxide