MOF-Polymer Hybrid Materials: From Simple Composites to Tailored Architectures

Гибридные материалы МОФ-полимер: от простых композитов к адаптированным архитектурам
Mark Kalaj, Seth M. Cohen, Joseph M. Palomba, Kyle C. Bentz, Sergio Ayala, Kyle Barcus, Yuji Katayama
2020-01-02

MOF-polymer hybrid materialsgas and liquid separationsmixed-matrix membranes (MMMs)polyMOFs and polyMOPs
Metal-organic frameworks (MOFs) are inherently crystalline, brittle porous solids. Conversely, polymers are flexible, malleable, and processable solids that are used for a broad range of commonly used technologies. The stark differences between the nature of MOFs and polymers has motivated efforts to hybridize crystalline MOFs and flexible polymers to produce composites that retain the desired properties of these disparate materials. Importantly, studies have shown that MOFs can be used to influence polymer structure, and polymers can be used to modulate MOF growth and characteristics. In this Review, we highlight the development and recent advances in the synthesis of MOF-polymer mixed-matrix membranes (MMMs) and applications of these MMMs in gas and liquid separations and purifications, including aqueous applications such as dye removal, toxic heavy metal sequestration, and desalination. Other elegant ways of synthesizing MOF-polymer hybrid materials, such as grafting polymers to and from MOFs, polymerization of polymers within MOFs, using polymers to template MOFs, and the bottom-up synthesis of polyMOFs and polyMOPs are also discussed. This review highlights recent papers in the advancement of MOF-polymer hybrid materials, as well as seminal reports that significantly advanced the field.
1
Hybridizing crystalline MOFs with flexible polymers produces composites that combine desirable properties of both material classes.
2
MOF-polymer mixed-matrix membranes (MMMs) have been developed and applied to gas and liquid separations, including dye removal, heavy metal sequestration, and desalination.
3
MOFs can influence polymer structure, while polymers can modulate MOF growth and characteristics in hybrid materials.
4
The field has progressed through both recent advances and seminal reports that together significantly advanced MOF-polymer hybrid materials.
5
Various synthesis strategies for MOF-polymer hybrids exist: grafting polymers to/from MOFs, polymerization within MOFs, polymer-templated MOF growth, and bottom-up synthesis of polyMOFs and polyMOPs.

MOF–polymer hybrid materials (including mixed-matrix membranes, grafted/polymerized MOF–polymer composites, polyMOFs and polyMOPs)

Synthesis methods and structure–property relationships enabling tailored architectures and applications (gas/liquid separations, dye removal, heavy-metal sequestration, desalination) of MOF–polymer hybrids

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2020-01-02
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Mark Kalaj
Seth M. Cohen
Joseph M. Palomba
Kyle C. Bentz
Sergio Ayala
Kyle Barcus
Yuji Katayama
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