Advances in One-Dimensional Metal Sulfide Nanostructure-Based Photodetectors with Different Compositions

Author:

Chen Jing1,Li Mingxuan1,Lin Haowei1,Zhou Chenchen1,Chen Wenbo1,Wang Zhenling1,Li Huiying1

Affiliation:

1. School of Materials Science and Engineering, Henan University of Technology, Zhengzhou 450001, China

Abstract

One-dimensional (1D) nanomaterials have attracted considerable attention in the fabrication of nano-scale optoelectronic devices owing to their large specific surface areas, high surface-to-volume ratios, and directional electron transport channels. Compared to 1D metal oxide nanostructures, 1D metal sulfides have emerged as promising candidates for high-efficiency photodetectors due to their abundant surface vacancies and trap states, which facilitate oxygen adsorption and dissociation on their surfaces, thereby suppressing intrinsic carrier recombination while achieving enhanced optoelectronic performance. This review focuses on recent advancements in the performance of photodetectors fabricated using 1D binary metal sulfides as primary photosensitive layers, including nanowires, nanorods, nanotubes, and their heterostructures. Initially, the working principles of photodetectors are outlined, along with the key parameters and device types that influence their performance. Subsequently, the synthesis methods, device fabrication, and photoelectric properties of several extensively studied 1D metal sulfides and their composites, such as ZnS, CdS, SnS, Bi2S3, Sb2S3, WS2, and SnS2, are examined. Additionally, the current research status of 1D nanostructures of MoS2, TiS3, ReS2, and In2S3, which are predominantly utilized as 2D materials, is explored and summarized. For systematic performance evaluation, standardized metrics encompassing responsivity, detectivity, external quantum efficiency, and response speed are comprehensively tabulated in dedicated sub-sections. The review culminates in proposing targeted research trajectories for advancing photodetection systems employing 1D binary metal sulfides.

Funder

Henan Province Science and Technology Research Project

Henan Province College Students’ Innovation and Entrepreneurship Training Program Project

Cultivation Programme for Young Backbone Teachers in Henan University of Technology, and the Science and Technology Key Project from Education Department of Henan Province

Publisher

MDPI AG

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