A Practical Strain Sensor Based on Ecoflex/Overlapping Graphene/Ecoflex Sandwich Structures for Vocal Fold Vibration and Body Motion Monitoring

Yanyan Fan, Hongbin Zhao, Yifan Yang, Yi Yang, Tianling Ren, H. Tu
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引用次数: 4

Abstract

Graphene-based stretchable and flexible strain sensors are one of the promising “bridges” to the biomedical realm. However, enhancing graphene-based wearable strain sensors to meet the demand of high sensitivity, broad sensing range, and recoverable structure deformation simultaneously is still a great challenge. In this work, through structural design, we fabricated a simple Ecoflex/Overlapping Graphene/Ecoflex (EOGE) strain sensor by encapsulating a graphene sensing element on polymer Ecoflex substrates using a drop-casting method. The EOGE strain sensor can detect stretching with high sensitivity, a maximum gauge factor of 715 with a wide strain range up to 57%, and adequate reliability and stability over 1,000 cycles for stretching. Moreover, the EOGE strain sensor shows recoverable structure deformation, and the sensor has a steady response in the frequency disturbance test. The good property of the strain sensor is attributed to the resistance variation induced by the overlap and crack structure of graphene by structural design. The vibrations caused by sound and various body movements have been thoroughly detected, which exhibited that the EOGE strain sensor is a promising candidate for wearable biomedical electronic applications.
一种用于声带振动和身体运动监测的基于Ecoflex/叠层石墨烯/Ecoflex夹层结构的实用应变传感器
基于石墨烯的可拉伸和柔性应变传感器是通往生物医学领域的有希望的“桥梁”之一。然而,增强石墨烯基可穿戴应变传感器以同时满足高灵敏度、宽传感范围和可恢复结构变形的需求仍然是一个巨大的挑战。在这项工作中,通过结构设计,我们通过使用液滴铸造方法将石墨烯传感元件封装在聚合物Ecoflex基板上,制造了一种简单的Ecoflex/Overlapping Graphene/Ecoflex(EOGE)应变传感器。EOGE应变传感器可以以高灵敏度、715的最大应变系数和高达57%的宽应变范围检测拉伸,并且在1000次拉伸循环中具有足够的可靠性和稳定性。此外,EOGE应变传感器显示出可恢复的结构变形,并且传感器在频率扰动测试中具有稳定的响应。应变传感器的良好性能归因于结构设计中石墨烯的重叠和裂纹结构引起的电阻变化。由声音和各种身体运动引起的振动已经被彻底检测到,这表明EOGE应变传感器是可穿戴生物医学电子应用的一个有前途的候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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