Thickness modulation of incline-grown Bi2O2Se for the construction of high-performance phototransistors

材料科学 光电子学 光探测 光电探测器 肖特基势垒 工作职能 制作 半导体 肖特基二极管 薄膜 图层(电子) 光学 纳米技术 医学 替代医学 物理 二极管 病理
作者
Sidi Fan,Yuting Wu,Weisheng Li,Jun Gao,Weiyu Yang,Jiajun Deng,Rui Cao,Xiaolong Liu
出处
期刊:Applied Physics Letters [American Institute of Physics]
卷期号:122 (22) 被引量:5
标识
DOI:10.1063/5.0149922
摘要

Newly emerging two-dimensional (2D) Bi2O2Se has received intense research interest due to its unique band structure and ultrafast optical properties. However, the device performance of Bi2O2Se-based photodetectors is far from the expectation because of the undesirable contact issues of the contaminates from the fabrication process or the high Schottky barrier caused by the large work function mismatch. In this work, highly efficient photodetection based on an “all-Bi2O2Se” device geometry has been demonstrated. By controlling the growth conditions, Bi2O2Se flakes with thicknesses of 8–15 nm (thin) and >40 nm (thick) are obtained. The thin one is a typical n-type semiconductor, while the thick one shows the degenerated n-type behavior with a higher Fermi level. Two thick flakes are adopted as 2D contacts for the absorption layer of thin flake, leading to the upward movement of the thin flake band structures. By tailoring the Schottky barrier frame at the interface junction, the high barriers are eliminated, which boost the transport and collection of photo-generated electrons. The photodetector demonstrates strong photoresponse to visible and near-infrared light. High photoresponsivity and specific detectivity of 3.34 × 104 A/W and 6.61 × 1013 Jones, respectively, are achieved under the 640 nm light illumination.
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