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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >IR position-sensitive detectors based on double-junction asymmetric TiO2/MoS2/reduced graphene-oxide sandwiches
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IR position-sensitive detectors based on double-junction asymmetric TiO2/MoS2/reduced graphene-oxide sandwiches

机译:基于双结不对称TiO2 / MOS2 /氧化石墨烯三明治的IR定位敏感探测器

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Owing to their outstanding electrical performance and tunable optical properties, stacked two dimensional (2D) heterojunctions are among the most promising candidates for the new generation of optoelectronic devices. In the last few years, extensive effort has been made toward utilizing semiconductor 2D materials in optical detectors. The application of semiconductor 2D materials may be extended to advanced functional optical sensors like position-sensitive detectors (PSDs). In this article, we propose a novel configuration for infrared PSDs based on double-junction asymmetric TiO2/MoS2/reduced graphene oxide sandwiches. Chemical vapor deposition of MoS2 nanoflakes on the reduced graphene oxide substrate is investigated in detail. The electrical performance of the TiO2/MoS2/RGO PSD exhibits a strong correlation with the position of localized IR illumination. The PSD benefits from a self-powering facility and displays high sensitivity in both the photocurrent response (5000 nA mm(-1)) and the photovoltage response (20 mV mm(-1)). In addition, the PSD shows exceptional nonlinearity (1%) as well as a totally positive correlation coefficient (1.000) for IR intensities 4 mW cm(-2). The origin of lateral photovoltage in the asymmetric TiO2/MoS2/RGO sandwich is discussed based on the band alignment of the materials. The presented results indicate the considerable potential of the double-junction configurations for employment in the new generation of functional optical detectors.
机译:由于它们出色的电气性能和可调光学性能,堆叠二维(2D)异质功能是新一代光电器件的最有希望的候选者之一。在过去的几年中,已经在光学检测器中利用半导体2D材料进行了广泛的努力。半导体2D材料的应用可以扩展到像位置敏感的检测器(PSDS)的高级功能光学传感器。在本文中,我们提出了一种基于双结不对称TiO2 / MOS2 /氧化石墨烯三明治的红外PSDS的新配置。详细研究了MOS2纳米蛋白酶上的MOS2纳米薄膜的化学气相沉积。 TiO2 / MOS2 / RGO PSD的电气性能与局部IR照明的位置表现出强烈的相关性。 PSD从自动设施中受益,并在光电流响应(& 5000na mm(-1))和光电响应(& 20 mv mm(-1))中显示出高灵敏度。另外,PSD显示出异常的非线性(& 1%)以及IR强度的完全正相关系数(1.000)。4 mw cm(-2)。基于材料的带对准讨论了不对称TiO2 / MOS2 / RGO三明治中的横向光伏的起源。所提出的结果表明,在新一代功能光检测器中采用的双结配置的相当大的潜力。

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