4.6 Review

Two-dimensional MOFs: Design & Synthesis and Applications

Journal

CHEMISTRY-AN ASIAN JOURNAL
Volume 16, Issue 21, Pages 3281-3298

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/asia.202100884

Keywords

Two-dimensional materials; metal-organic framework; catalysis; supercapacitor; sensors

Funding

  1. Yangzhou University Science and Technology Innovation Cultivation Fund [2019CXJ026]
  2. Six Talent Peaks Project in Jiangsu Province [TD-JNHB-012]

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Two-dimensional materials, including two-dimensional MOF, have garnered significant attention for their unique properties and potential applications. The applications of two-dimensional MOF spanning catalysis, supercapacitors, gas adsorption/separation, sensors have been increasingly explored by researchers. Challenges and opportunities in this field have been discussed to offer a promising outlook for future developments.
For the past few years, two-dimensional materials have attracted widespread attention owing to their special properties and potential applications. It is well-known that graphene, transition metal disulfide compounds (TMDC), carbon nitride, transition metal carbonitrides (Mxenes), silene and hexagonal boron nitride are typical two-dimensional materials. Compared with these traditional two-dimensional materials, two-dimensional MOF is favored by numerous researchers because of its unique structure. Based on the unique metal ion and organic ligand coordination of MOF and two-dimensional layered structure, the applications of two-dimensional MOF were getting serious, including catalysis, supercapacitor, gas adsorption/separation, sensors and so on. This review presents a relatively comprehensive summary of the design & synthesis and applications of two-dimensional MOF over the past few years. Furthermore, the opportunities and challenges have been discussed to supply a promising prospect to this field.

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