基于铁电 BiFeO3 薄膜的非接触式智能传感器,用于识别透明和肉眼无法分辨的材料

Shengjie Yin, Hongyu Li, Weiqi Qian, Md Al Mahadi Hasan, Ya Yang
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引用次数: 0

摘要

目前,铁电光电材料的研究主要集中在光电检测方面。在物联网快速发展的背景下,使用更小的薄膜器件作为传感器显得尤为重要。在这项工作中,利用溶胶-凝胶法在掺杂 F 的氧化锡玻璃衬底上制造了氧化铟锡/铁氧体铋/镍酸镧器件。该传感器可连续输出光电信号,对环境影响很小。与其他类型的传感器相比,这种光电传感器具有 1.25 毫秒的超低响应时间和超高灵敏度。本研究开发了一种基于铋铁氧体传感器的材料识别系统。它能有效识别人眼难以分辨的八种材料。这为在材料识别领域发展物联网提供了新的思路和方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Non-contact intelligent sensor for recognizing transparent and naked-eye indistinguishable materials based on ferroelectric BiFeO3 thin films
At present, the research on ferroelectric photovoltaic materials mainly focuses on photoelectric detection. In the context of the rapid development of the Internet of Things, it is particularly important to use smaller thin-film devices as sensors. In this work, an indium tin oxide/ bismuth ferrite/ lanthanum nickelate device has been fabricated on an F-doped tin oxide glass substrate using the sol-gel method. The sensor can continuously output photoelectric signals with little environmental impact. Compared to other types of sensors, this photoelectric sensor has an ultra-low response time of 1.25 ms and ultra-high sensitivity. In this work, a material recognition system based on a bismuth ferrite sensor is developed. It can effectively identify eight kinds of materials that are difficult for human eyes to distinguish. This provides new ideas and methods for developing the Internet of Things in material identification.
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