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Emerging trends in porous materials for CO2capture and conversion

journal contribution
posted on 2024-11-02, 22:39 authored by Gurwinder Singh, Jang Mee LeeJang Mee Lee, Ajay Karakoti, Rohan Bahadur
The presence of an excessive concentration of CO2 in the atmosphere needs to be curbed with suitable measures including the reduction of CO2 emissions at stationary point sources such as power plants through carbon capture technologies and subsequent conversion of the captured CO2 into non-polluting clean fuels/chemicals using photo and/or electrocatalytic pathways. Porous materials have attracted much attention for carbon capture and in the recent past; they have witnessed significant advancements in their design and implementation for CO2 capture and conversion. In this context, the emerging trends in major porous adsorbents such as MOFs, zeolites, POPs, porous carbons, and mesoporous materials for CO2 capture and conversion are discussed. Their surface texture and chemistry, and the influence of various other features on their efficiency, selectivity, and recyclability for CO2 capture and conversion are explained and compared thoroughly. The scientific and technical advances on the material structure versus CO2 capture and conversion provide deep insights into designing effective porous materials. The review concludes with a summary, which compiles the key challenges in the field, current trends and critical challenges in the development of porous materials, and future research directions combined with possible solutions for realising the deployment of porous materials in CO2 capture and conversion.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1039/d0cs00075b
  2. 2.
    ISSN - Is published in 03060012

Journal

Chemical Society Reviews

Volume

49

Issue

13

Start page

4360

End page

4404

Total pages

45

Publisher

Royal Society of Chemistry

Place published

United Kingdom

Language

English

Copyright

© Royal Society of Chemistry 2023

Former Identifier

2006121979

Esploro creation date

2023-04-29

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