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A Flexible Temperature Sensor Based on Reduced Graphene Oxide for Robot Skin Used in Internet of Things

机译:一种基于氧化石墨烯的柔性温度传感器用于物联网机器人皮肤

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摘要

Flexible electronics, which can be distributed on any surface we need, are highly demanded in the development of Internet of Things (IoT), robot technology and electronic skins. Temperature is a fundamental physical parameter, and it is an important indicator in many applications. Therefore, a flexible temperature sensor is required. Here, we report a simple method to fabricate three lightweight, low-cost and flexible temperature sensors, whose sensitive materials are reduced graphene oxide (r-GO), single-walled carbon nanotubes (SWCNTs) and multi-wall carbon nanotubes (MWCNTs). By comparing linearity, sensitive and repeatability, we found that the r-GO temperature sensor had the most balanced performance. Furthermore, the r-GO temperature sensor showed good mechanical properties and it could be bent in different angles with negligible resistance change. In addition, the performance of the r-GO temperature sensor remained stable under different kinds of pressure and was unaffected by surrounding environments, like humidity or other gases, because of the insulating layer on its sensitive layer. The easy-fabricated process and economy, together with the remarkable performance of the r-GO temperature sensor, suggest that it is suitable for use as a robot skin or used in the environment of IoT.
机译:可以在我们需要的任何表面上分布的柔性电子产品在物联网(IoT),机器人技术和电子皮肤的开发中具有很高的要求。温度是基本的物理参数,并且在许多应用中是重要的指标。因此,需要柔性的温度传感器。在这里,我们报告了一种简单的方法来制造三个轻巧,低成本且灵活的温度传感器,其敏感材料为氧化石墨烯(r-GO),单壁碳纳米管(SWCNT)和多壁碳纳米管(MWCNT) 。通过比较线性,灵敏度和重复性,我们发现r-GO温度传感器具有最平衡的性能。此外,r-GO温度传感器显示出良好的机械性能,并且可以在不同角度弯曲且电阻变化可忽略不计。此外,r-GO温度传感器的性能在不同压力下仍保持稳定,并且不受其周围环境(如湿度或其他气体)的影响,这是因为其敏感层上的绝缘层。易于制造的过程和经济性,以及r-GO温度传感器的出色性能,表明它适合用作机器人外壳或在IoT环境中使用。

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