4.6 Article

Metal-Organic Frameworks and Other Crystalline Materials for Ultrahigh Superprotonic Conductivities of 10-2 S cm-1 or Higher

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 25, 期 25, 页码 6259-6269

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201806126

关键词

crystalline materials; fuel cells; metal-organic frameworks; proton transport; structure-functional relationships

资金

  1. CSIR, New Delhi [01(2889)/17/EMR-II]
  2. SERB, New Delhi as an Early Career Research Award [ECR/2015/000041]

向作者/读者索取更多资源

Proton-conducting materials in the solid state have received immense attention for their role as electrolytes in proton-exchange membrane fuel cells. Recently, crystalline materials-metal-organic frameworks (MOFs), hydrogen-bonded organic frameworks (HOFs), covalent organic frameworks (COFs), polyoxometalates (POMs), and porous organic crystals-have become an exciting research topic in the field of proton-conducting materials. For a better electrolyte, a high proton conductivity on the order of 10(-2) S cm(-1) or higher is preferred as efficient proton transport between the electrodes is ultimately necessary. With an emphasis on design principles, this Concept will focus on MOFs and other crystalline solid-based proton-conducting platforms that exhibit ultrahigh superprotonic conductivities with values in excess of 10(-2) S cm(-1). While only a handful of MOFs exhibit such an ultrahigh conductivity, this quality in other systems is even rarer. In addition to interpreting the structural-functional correlation by taking advantage of their crystalline nature, we address the challenges and promising directions for future research.

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