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Near-Linear Responsive and Wide-Range Pressure and Stretch Sensor Based on Hierarchical Graphene-Based Structures via Solvent-Free Preparation

机译:基于溶剂制剂的基于分层石墨烯的结构近线响应和宽范围压力和拉伸传感器

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摘要

Flexible and wearable electronics have huge potential applications in human motion detection, human–computer interaction, and context identification, which have promoted the rapid development of flexible sensors. So far the sensor manufacturing techniques are complex and require a large number of organic solvents, which are harmful not only to human health but also to the environment. Here, we propose a facile solvent-free preparation toward a flexible pressure and stretch sensor based on a hierarchical layer of graphene nanoplates. The resulting sensor exhibits many merits, including near-linear response, low strain detection limits to 0.1%, large strain gauge factor up to 36.2, and excellent cyclic stability withstanding more than 1000 cycles. Besides, the sensor has an extraordinary pressure range as large as 700 kPa. Compared to most of the reported graphene-based sensors, this work uses a completely environmental-friendly method that does not contain any organic solvents. Moreover, the sensor can practically realize the delicate detection of human body activity, speech recognition, and handwriting recognition, demonstrating a huge potential for wearable sensors.
机译:灵活且可穿戴电子设备具有巨大的人体运动检测,人机互动和上下文识别潜在应用,这些应用促进了柔性传感器的快速发展。到目前为止,传感器制造技术是复杂的并且需要大量有机溶剂,这不仅对人类健康有害,而且对环境有害。在此,我们向基于石墨烯纳米层的分层层提出朝向柔性压力和拉伸传感器的可容纳无溶剂制剂。所得到的传感器表现出许多优点,包括近线性响应,低应变检测限度为0.1%,大小应变仪系数高达36.2,且优异的循环稳定性耐受超过1000个循环。此外,传感器具有大约700 kPa的特殊压力范围。与大多数报告的基于石墨烯的传感器相比,这项工作采用了一种完全不含任何有机溶剂的完全环保方法。此外,传感器可以实际上实现人体活动,语音识别和手写识别的微妙检测,证明了可穿戴传感器的巨大潜力。

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