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基于仿生并行静脉状结构的柔性应变传感器用于人体运动监测。

Flexible Strain Sensors Based on Bionic Parallel Vein-like Structures for Human Motion Monitoring.

机构信息

Key Laboratory of Trans-Scale Laser Manufacturing (Beijing University of Technology), Ministry of Education, Beijing 100124, China.

Beijing Engineering Research Center of Laser Technology, Beijing University of Technology, Beijing 100124, China.

出版信息

Sensors (Basel). 2024 Jan 12;24(2):468. doi: 10.3390/s24020468.

Abstract

In recent years, strain sensors have penetrated various fields. The capability of sensors to convert physical signals into electrical signals is of great importance in healthcare. However, it is still challenging to obtain sensors with high sensitivity, large operating range and low cost. In this paper, a stretchable strain sensor made of a double-layer conductive network, including a biomimetic multilayer graphene-Ecoflex (MLG-Ecoflex) substrate and a multilayer graphene-carbon nanotube (MLG-CNT) composite up-layer was developed. The combined action of the two layers led to an excellent performance with an operating range of up to 580% as well as a high sensitivity (gauge factor (GF) of 1517.94). In addition, a pressure sensor was further designed using the bionic vein-like structure with a multi-layer stacking of MLG-Ecoflex/MLG-CNT/MLG-Ecoflex to obtain a relatively high deformation along the direction of thickness. The device presented a high sensing performance (up to a sensitivity of 0.344 kPa) capable of monitoring small movements of the human body such as vocalizations and gestures. The good performance of the sensors together with a simple fabrication procedure (flip-molding) make it of potential use for some applications, for example human health monitoring and other areas of human interaction.

摘要

近年来,应变传感器已经渗透到各个领域。传感器将物理信号转换为电信号的能力在医疗保健中非常重要。然而,获得具有高灵敏度、大工作范围和低成本的传感器仍然具有挑战性。在本文中,开发了一种由双层导电网络制成的可拉伸应变传感器,包括仿生多层石墨烯- Ecoflex(MLG-Ecoflex)基底和多层石墨烯-碳纳米管(MLG-CNT)复合上层。两层的共同作用导致了出色的性能,工作范围高达 580%,灵敏度高(应变系数(GF)为 1517.94)。此外,还进一步使用仿生静脉状结构设计了压力传感器,该结构采用多层 MLG-Ecoflex/MLG-CNT/MLG-Ecoflex 堆叠,以获得沿厚度方向的相对较大变形。该器件具有较高的传感性能(灵敏度高达 0.344 kPa),能够监测人体的微小运动,如发声和手势。传感器的良好性能和简单的制造工艺(翻转成型)使其在一些应用中具有潜在用途,例如人体健康监测和其他人机交互领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e73/10819304/e2ad0f3d9cef/sensors-24-00468-g001.jpg

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