4.7 Article

Charge transport in metal-organic frameworks for electronics applications

Journal

APL MATERIALS
Volume 8, Issue 5, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5143590

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Funding

  1. U.S. Department of Energy, Office of Science, Office of Workforce Development for Teachers and Scientists (WDTS) under the Visiting Faculty Program (VFP)

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In recent years, functional electronic nanomaterials have made significant strides from advancements in the interplay of physics, chemistry, materials science, and computational research. However, synthetically tunable electronic materials are a long-standing, but elusive, technological goal. More recently, metal-organic frameworks (MOFs), a class of nanoporous, hybrid inorganic-organic crystalline solids, have garnered attention as a novel class of electronic nanomaterials. The aim of this perspective is to (i) highlight the charge transport behavior of recently discovered (2017-2019) electronic MOFs and (ii) recommend future directions for improvement of intrinsically and extrinsically conductive MOFs for MOF-based electronics.

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