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Zero power infrared sensing in 2D/3D-assembled heterogeneous graphene/In/InSe/Au

机译:零功率红外传感在2 d / 3 d-assembled异构的石墨烯/ / InSe /非盟

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摘要

Low- or self-powered infrared sensors can be used in a broad range of applications, including networking mobile edge devices and image recognition for autonomous driving technology. Here, we show state-of-the-art self-powered near-infrared (NIR) sensors using graphene/In/InSe/Au as a photoactive region. The self-powered NIR sensors show outstanding performance, achieving a photoresponsivity of ∼8.5 A W−1 and a detectivity of ∼1012 Jones at 850 nm light. Multiple self-powered InSe photodetectors with different device structures and contacts were systematically investigated. In particular, the asymmetrically assembled graphene/In/InSe/Au vertical heterostructure offers a high built-in field, which gives rise to efficient electron–hole pair separation and transit time that is shorter than the photocarrier lifetime. The built-in potential across the InSe was estimated using the Schottky barrier height at each metal contact with InSe, obtained using density functional theory calculations. We also demonstrate InSe vertical field-effect transistors and provide an out-of-plane carrier mobility of InSe. Using the out-of-plane mobility and structural parameters of each device, the built-in field, drift velocity, and corresponding transit time are estimated.
机译:可以使用低收入或自供电的红外传感器在一个广泛的应用范围,包括网络移动设备和图像边缘自动驾驶技术的识别。在这里,我们将展示最先进的自供电的近红外(NIR)传感器使用石墨烯/在/ InSe /非盟作为光敏的地区。自供电的近红外光谱传感器显示突出性能,实现photoresponsivityW−1和8.5∼∼1012琼斯的探测能力850海里。光电探测器与不同的设备结构系统地调查和联系人。特别不对称地组装石墨烯/在/ InSe /非盟垂直异质结构提供了一个高内置字段,它产生高效的电子空穴对分离和运输时间短于的photocarrier一生。在使用肖特基InSe估计在每个金属接触InSe,势垒高度使用密度泛函理论得到计算。场效应晶体管,并提供一个平面外InSe的载流子迁移率。出平面流动和结构参数每个设备的内置字段,漂移速度,和相应的运输时间估计。

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