Low-gap zinc porphyrin as an efficient dopant for photomultiplication type photodetectors

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Abstract

A new zinc porphyrin, named as Por4IC, was synthesized, which through extension of conjugation and an enhancement of planarity and donor-acceptor interactions exhibits a very low band gap. The molecule was able to efficiently facilitate a photomultiplication effect in blend with P3HT which was assisted by electron trapping followed by hole tunneling injection from the Al electrode giving rise to a high external quantum efficiency of 22 182% and a specific detectivity of 4.4 × 1012 Jones at 355 nm and at -15 V bias. This work introduces porphyrin derivatives as promising dopants for photomultiplication type photodetectors. This journal is

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Mone, M., Yang, K., Murto, P., Zhang, F., & Wang, E. (2020). Low-gap zinc porphyrin as an efficient dopant for photomultiplication type photodetectors. Chemical Communications, 56(84), 12769–12772. https://doi.org/10.1039/d0cc03933k

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