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Open Access

High-performance self-driven broadband photoelectrochemical photodetector based on reduced graphene oxide/Bi2Te3 heterojunction

Chenchen Zhaoa,1Yangyang Liua,1Dongbo Wanga( )Wen Hea( )Bingke ZhangaJingwen PanaZhi ZengaDonghao LiuaSihang LiuaShujie JiaoaXuan Fangb( )Dan FangbLiancheng Zhaoa( )Jinzhong Wanga( )
School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, China
Changchun University Science and Technology, Sch Sci, State Key Lab High Power Semicond Lasers, Changchun, 130022, China

1 Chenchen Zhao and Yangyang Liu contributed to this work equally.

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Abstract

Attributed to its excellent physicochemical properties, graphene (GR) has very active applications in the fields of catalysis, optoelectronic devices, and battery electrode materials. However, until now, regulating the type and density of carriers in GR is still crucial for its practical applications. Here, reduced graphene oxide (RGO)-Bi2Te3 heterojunctions doped with different contents were prepared by a simple one-step method. The Bi2Te3 materials containing different RGO were made into broadband (365–850 ​nm) photoelectrochemical-type detectors, and the effects of the doping amount of RGO on the optoelectronic behavior of the devices and the intrinsic operation mechanism of the devices were investigated in detail. The results show that the values of Iph/Idark, Ri, and D* of Bi2Te3/RGO heterojunction devices obtained with 1 ​mg of RGO doping are 412, 6.072 ​mA/W, and 2.406 ​× ​1010 Jones, respectively. It is anticipated that this work will provide a research basis for future quantitative tuning of the performance of micro-nano devices by GR.

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Nano Materials Science
Pages 741-751

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Cite this article:
Zhao C, Liu Y, Wang D, et al. High-performance self-driven broadband photoelectrochemical photodetector based on reduced graphene oxide/Bi2Te3 heterojunction. Nano Materials Science, 2024, 6(6): 741-751. https://doi.org/10.1016/j.nanoms.2023.12.008

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Received: 08 October 2023
Accepted: 06 December 2023
Published: 20 February 2024
© 2024 Chongqing University.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).