Issue 13, 2022

A porous GaN/MoO3 heterojunction for filter-free, ultra-narrowband ultraviolet photodetection

Abstract

Commonly, a narrowband photodetector that can detect specific wavelengths is obtained by integrating a broadband photodetector with an external optical filter. However, this integration significantly increases the structural complexity and cost, and reduces the sensitivity. Herein, we demonstrate a filter-free, ultra-narrowband, ultraviolet photodetector based on a porous GaN/MoO3 heterojunction. Porous GaN with reduced defects and enhanced light trapping was fabricated by a facile photoelectrochemical etching method. The optimized porous GaN/MoO3 photodetector shows visible-blind (peaked at 370 nm) and ultra-narrowband (FWHM <10 nm) ultraviolet photoresponse. Moreover, the photodetector exhibits a large light-to-dark current ratio (nearly 105 at −3 V), along with a remarkable responsivity, external quantum efficiency, and detectivity of 187.5 mA W−1, 62.8%, and 4.34 × 1012 Jones, respectively. The highly-performing and narrowband response makes the porous GaN/MoO3 ultraviolet photodetector promising for secure optical communication systems.

Graphical abstract: A porous GaN/MoO3 heterojunction for filter-free, ultra-narrowband ultraviolet photodetection

Supplementary files

Article information

Article type
Paper
Submitted
15 Dec 2021
Accepted
19 Feb 2022
First published
21 Feb 2022

J. Mater. Chem. C, 2022,10, 5116-5123

A porous GaN/MoO3 heterojunction for filter-free, ultra-narrowband ultraviolet photodetection

Y. Guo, W. Song, Q. Liu, Y. Sun, Z. Chen, X. He, Q. Zeng, X. Luo, R. Zhang and S. Li, J. Mater. Chem. C, 2022, 10, 5116 DOI: 10.1039/D1TC05992K

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