Water-stable metal–organic frameworks (MOFs): rational construction and carbon dioxide capture
Водостойкие металлоорганические каркасы (MOFs): рациональное построение и улавливание диоксида углерода
2024-01-01
SCID: 54.1/8kwe5zpw
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carbon dioxide capturedirect air captureflue gas decarbonizationmetal–organic frameworks (MOFs)water-stable metal–organic frameworks
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Abstract (AI)
, natural gas). Due to their excellent adsorption performances, MOFs are considered as a promising adsorbent that can capture carbon dioxide efficiently and energetically, and many water-stable MOFs have been used to capture carbon dioxide in various scenarios, including flue gas decarbonization, direct air capture, and purified crude natural gas. In this review, we first introduce the design and synthesis of water-stable MOFs and then describe their applications in carbon dioxide capture, and finally provide some personal comments on the challenges facing these areas.
Key Findings
1
The paper discusses applications of water-stable MOFs to carbon dioxide capture and outlines current challenges in the field.
2
The review summarizes strategies for rational design and synthesis of water-stable MOFs tailored for CO2 capture.
3
Water-stable MOFs have been applied for CO2 capture in diverse scenarios: flue gas decarbonization, direct air capture, and purified crude natural gas.
4
Water-stable metal–organic frameworks (MOFs) exhibit excellent adsorption performance for CO2 capture.
Research Object
Water-stable metal–organic frameworks (MOFs)
Research Subject
Design, synthesis, and application of water-stable MOFs for carbon dioxide capture in scenarios such as flue gas decarbonization, direct air capture, and natural gas purification
Publication Details
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2024-01-01
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