Abstract
Metal-organic frameworks (MOFs) are represented as the potential candidates of photo and electro-catalytic CO2 reduction due to their incredible surface area, phenotypic structures, varied porosity and defined morphologies. Nevertheless, experimental usage of pristine MOFs in the reduction of CO2 is difficult, as they are inherently low-conductive in electricity, unstable in their makeup, and experience weak metal-oxygen interaction. The core concepts of photo and electro-catalytic CO2 reduction are first described in this review to give the background to the understanding of MOF-based catalytic systems. It then critically discusses the structural properties of MOFs and its derivatives and identifies the key shortcomings which limit catalytic performance. To address these issues, the recent developments of MOF-based composite catalysts have been discussed, such as MOF@graphene, MOF@metal oxides, MOF@MXene, and MOF@layered double hydroxide (LDH). These composites exhibit better conductivity, greater stability, better metaloxygen interactions and better catalytic strength than pristine MOFs. Finally, the development of the area occurs currently is summarized, and the future prospects are given, with rational designing of effective, durable, and scalable MOF-based composite catalysts towards sustainable CO2 reduction.
| Original language | English |
|---|---|
| Article number | 124605 |
| Journal | Environmental Research |
| Volume | 302 |
| DOIs | |
| State | Published - 1 Aug 2026 |
| Externally published | Yes |
Bibliographical note
Publisher Copyright:© 2026 Elsevier Inc.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 13 Climate Action
Keywords
- CO reduction
- MOF@Graphene
- MOF@LDH
- MOF@MXene
- MOF@metal oxide
- Metal-organic frameworks (MOFs)
ASJC Scopus subject areas
- Biochemistry
- General Environmental Science
- Public Health, Environmental and Occupational Health
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