Issue 18, 2023

A high-performance UV photodetector with superior responsivity enabled by a synergistic photo/thermal enhancement of localized surface plasmon resonance

Abstract

In this paper, we propose a new strategy to enhance the photoelectric performance of ultraviolet (UV) photodetectors by exploiting a synergistic photo-thermal effect which is induced by a localized surface plasmon resonance. We demonstrate that a W18O49 plasmonic semiconductor is able to improve the performance of target photodetectors as a result of a localized surface plasmon resonance, which increases light absorption, enhances the photothermal effect to deliver an increased photocurrent, and provides photo-induced “hot electrons” to limit carrier depletion over prolonged light illumination. Consequently, a UV photodetector based on W18O49/TiO2 nanofibers is shown to exhibit an excellent photodetection performance with a high responsivity of up to 1.6 × 104 A W−1, which is five times greater than that of the pure TiO2 analogue and greatly exceeds those of the TiO2-based photodetectors reported to date.

Graphical abstract: A high-performance UV photodetector with superior responsivity enabled by a synergistic photo/thermal enhancement of localized surface plasmon resonance

Supplementary files

Article information

Article type
Paper
Submitted
07 Feb 2023
Accepted
11 Apr 2023
First published
12 Apr 2023

J. Mater. Chem. C, 2023,11, 6227-6238

A high-performance UV photodetector with superior responsivity enabled by a synergistic photo/thermal enhancement of localized surface plasmon resonance

L. Zheng, Y. Yang, C. R. Bowen, L. Jiang, Z. Shu, Y. He, H. Yang, Z. Xie, T. Lu, F. Hu and W. Yang, J. Mater. Chem. C, 2023, 11, 6227 DOI: 10.1039/D3TC00446E

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