Affiliation:
1. School of Resources Environment and Materials State Key Laboratory of Featured Metal Materials and Life‐cycle Safety for Composite Structures Guangxi University Nanning 530004 P. R. China
2. School of Physical Science and Technology Guangxi University Nanning 530004 P. R. China
3. Institute of Micro/Nano Materials and Devices Ningbo University of Technology Ningbo 315211 P. R. China
4. Laboratory of Physics Vinča Institute of Nuclear Sciences‐National Institute of the Republic of Serbia University of Belgrade Belgrade 11351 Serbia
5. Department of Nanoporous and Nanosized Carbon Materials O. Chuiko Institute of Surface Chemistry NASU Kyiv 03164 Ukraine
Abstract
AbstractEmerging photoelectrochemical (PEC) photodetectors (PDs) have notable advantages over conventional PDs and have attracted extensive attention. However, harsh liquid environments, such as those with high corrosivity and attenuation, substantially restrict their widespread application. Moreover, most PEC PDs are constructed by assembling numerous nanostructures on current collector substrates, which inevitably contain abundant interfaces and defects, thus greatly weakening the properties of PDs. To address these challenges, a high‐performance pH‐universal PEC ultraviolet (UV) PD based on a whole single‐crystal integrated self‐supporting 4H‐SiC nanopore array photoelectrode is constructed, which is fabricated using a two‐step anodic oxidation approach. The PD exhibits excellent photodetection behavior, with high responsivity (218.77 mA W−1), detectivity (6.64 × 1013 Jones), external quantum efficiency (72.47%), and rapid rise/decay times (17/48 ms) under 375 nm light illumination with a low intensity of 0.15 mW cm−2 and a bias voltage of 0.6 V, which is fall in the state‐of‐the‐art of the wide‐bandgap semiconductor‐based PDs reported thus far. Furthermore, the SiC PEC PD exhibits excellent photoresponse and long‐term operational stability in pH‐universal liquid environments. The improved photodetection performance of the SiC PEC PD is primarily attributed to the synergistic effect of the nanopore array structure, integrated self‐supporting configuration, and single‐crystal structure of the whole photoelectrode.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Zhejiang Province
Cited by
1 articles.
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