4.8 Review

Nanoporous Metal Phosphonate Hybrid Materials as a Novel Platform for Emerging Applications: A Critical Review

Journal

SMALL
Volume 17, Issue 22, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202005304

Keywords

challenges and perspectives; emerging applications; nanoporous metal phosphonates; porous structure design; versatile skeletons

Funding

  1. National Natural Science Foundation of China [21573115, 21875118]
  2. Natural Science Foundation of Tianjin [19JCZDJC37700]
  3. Ph.D. Candidate Research Innovation Fund of NKU School of Materials Science and Engineering

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Nanoporous metal phosphonates are driving the rapid development of emerging energy storage, catalysis, environmental intervention, and biology, with recent research breakthroughs focusing on fascinating pore properties and versatile skeletons. This review highlights milestones in porous metal phosphonate research, including diverse synthesis strategies and various applications, while also discussing current challenges and future prospects for this field.
Nanoporous metal phosphonates are propelling the rapid development of emerging energy storage, catalysis, environmental intervention, and biology, the performances of which touch many fundamental aspects of portable electronics, convenient transportation, and sustainable energy conversion systems. Recent years have witnessed tremendous research breakthroughs in these fields in terms of the fascinating pore properties, the structural periodicity, and versatile skeletons of porous metal phosphonates. This review presents recent milestones of porous metal phosphonate research, from the diversified synthesis strategies for controllable pore structures, to several important applications including adsorption and separation, energy conversion and storage, heterogeneous catalysis, membrane engineering, and biomaterials. Highlights of porous structure design for metal phosphonates are described throughout the review and the current challenges and perspectives for future research in this field are discussed at the end. The aim is to provide some guidance for the rational preparation of porous metal phosphonate materials and promote further applications to meet the urgent demands in emerging applications.

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