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掺铟的 SnO 纳米带通过简便的组装工艺用于高性能透明可挠曲光探测器。

Indium-doped SnO nanobelts for high-performance transparent and flexible photosensors by a facile assembly.

机构信息

State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

Nanotechnology. 2017 Aug 18;28(33):335705. doi: 10.1088/1361-6528/aa7910. Epub 2017 Jun 13.

Abstract

Flexible and transparent electronics is the emerging future technology for optoelectronic devices. Recently, it has attracted considerable attention from the research community due to its prodigious commercial applications. Herein, we report highly flexible and transparent ultraviolet photosensors based on indium-doped tin oxide nanobelts with enhanced simultaneous photosensitivity and recovery speed, compared to pure SnO nanobelts. Optoelectronic properties of the nanobelt photosensors have been found to be strongly related to the indium doping concentration and grain size of the nanobelts. A facile assembly method has been used to prepare the well-aligned nanobelt device for UV photosensors. Excellent flexible properties of the nanobelts have been explored, which show a superior response during bending tests and almost maintain their properties after 300 bending cycles. The enhanced photosensitivity of about 70 times that of undoped SnO nanobelts along with a highly enhanced recovery speed of less than 1.75 s have been achieved by the precise doping of In into SnO lattice nanobelts. All these results show that our prepared photosensors demonstrate superior mechanical, electrical, and optical properties for their use in flexible and transparent electronics.

摘要

柔性透明电子是光电设备的新兴未来技术。由于其具有巨大的商业应用前景,最近它引起了研究界的极大关注。在此,我们报告了基于掺铟氧化锡纳米带的高灵活透明紫外光传感器,与纯 SnO 纳米带相比,其同时具有增强的灵敏度和恢复速度。纳米带光电探测器的光电性能与纳米带的掺铟浓度和晶粒尺寸密切相关。我们采用了一种简单的组装方法来制备用于紫外光传感器的排列整齐的纳米带器件。我们探索了纳米带的优异柔性性能,在弯曲测试中表现出了卓越的响应,并且在经过 300 次弯曲循环后几乎保持其性能。通过精确地将 In 掺杂到 SnO 晶格纳米带中,实现了大约 70 倍的灵敏度增强和不到 1.75 s 的高速恢复。所有这些结果表明,我们制备的传感器具有出色的机械、电气和光学性能,可用于柔性透明电子设备。

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