Acid-Dependent Charge Transport in a Solution-Processed 2D Conductive Metal-Organic Framework

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Abstract

The development of conductive metal-organic frameworks (MOFs) presents a unique challenge in materials chemistry because it is unclear how to dope them. Here, we demonstrate that the inclusion of pendant amines on hexahydroxytriphenylene linkages results in two-dimensional (2D) polycrystalline frameworks Cu3(HHTATP)2, isostructural to its Cu3(HHTP)2 parent, and exhibits the highest electrical conductivity of 1.21 S/cm among 2D MOFs featuring CuO4 metal nodes. Moreover, the bulk material can be treated with acid, resulting in a protonation-dependent increase in the conductivity. By spin-coating the acidic solution, we fabricated large-area thin films and collectively demonstrated an intuitive route to solution-processable, dopable, conductive MOFs.

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Park, G., Demuth, M. C., Hendon, C. H., & Park, S. S. (2024). Acid-Dependent Charge Transport in a Solution-Processed 2D Conductive Metal-Organic Framework. Journal of the American Chemical Society. https://doi.org/10.1021/jacs.4c02326

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