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  5. A Review of the Current Progress of Metal-organic Framework and Covalent Organic Framework Nanocomposite Membrane in O<sub>2</sub>/N<sub>2</sub> Gas Separation
 
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A Review of the Current Progress of Metal-organic Framework and Covalent Organic Framework Nanocomposite Membrane in O<sub>2</sub>/N<sub>2</sub> Gas Separation

Journal
Current Nanomaterials
ISSN
2405-4615
Date Issued
2025-02
Author(s)
Kok Chung Chong
Lee Kong Chian Faculty of Engineering and Science
Pui San Ho
Soon Onn Lai
Lee Kong Chian Faculty of Engineering and Science
chong woon chan
Lee Kong Chian Faculty of Engineering and Science
Siew Hoong Shuit
Lee Kong Chian Faculty of Engineering and Science
DOI
10.2174/2405461508666230505093626
Abstract
The use of membrane technology has developed rapidly since the proposal of the Robeson upper bound. Nevertheless, the researchers proposed various methods and techniques to enhance the permeability and selectivity to achieve a breakthrough of the upper bound. Metal-organic framework (MOF) and covalent organic framework (COF) were the recently-interest- arising materials enhancing gas separation performance. In this study, recent advances in MOF and COF were comprehensively discussed in terms of the materials, properties and synthesis method. Later, the MOF and COF nanocomposite mixed matrix membrane development was discussed to evaluate the recent improvement of these membranes used in the O2/N2 gas separation performance. This work intends to overview the recent progress and development of the metal-organic framework, covalent organic frameworks and the used nanocomposite membrane in O2/N2 gas separation. This topic review was carried out from a thorough literature review of metal-organic frameworks, covalent organic frameworks and the used nanocomposite membrane in O2/N2 gas separation. Additionally, the recent achievement of the O2/N2 gas separation by nanocomposite membrane in term of permeability and selectivity are also discussed. Findings from this study suggested that MOF and COF-based nanocomposite membranes could be used in either the O2/N2 and N2/O2 gas separation process with the possibility of being involved in the gas production sector. © 2025 Bentham Science Publishers.
Subjects

COF

gas separation

mixed matrix membrane...

MOF

Nanocomposite

nitrogen

oxygen

Biological membranes

Gas industry

Layered semiconductor...

Membrane technology

Nanoclay

Nanocomposites

Nanofiltration membra...

'current

Covalent organic fram...

Gas separation perfor...

Gas separations

Materials synthesis

Metalorganic framewor...

Method and technique

Mixed-matrix membrane...

Nano-composite membra...

Upper Bound

Oxygen permeable memb...

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