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用于医疗监测的基于结构集成三维导电网络的柔性应变传感器的液滴图案化

Droplets Patterning of Structurally Integrated 3D Conductive Networks-Based Flexible Strain Sensors for Healthcare Monitoring.

作者信息

Zhang Yang, Zhao Danjiao, Cao Lei, Fan Lanlan, Lin Aiping, Wang Shufen, Gu Feng, Yu Aibing

机构信息

Laboratory of Advanced Materials and Manufacturing (LAMM), Nanchang Key Laboratory for Advanced Manufacturing of Electronic Information Materials and Devices, International Institute for Innovation, Jiangxi University of Science and Technology, Nanchang 330013, China.

Institute for Process Modelling and Optimization, Jiangsu Industrial Technology Research Institute, Suzhou 215123, China.

出版信息

Nanomaterials (Basel). 2022 Dec 30;13(1):181. doi: 10.3390/nano13010181.

Abstract

Flexible strain sensors with significant extensibility, stability, and durability are essential for public healthcare due to their ability to monitor vital health signals noninvasively. However, thus far, the conductive networks have been plagued by the inconsistent interface states of the conductive components, which hampered the ultimate sensitivity performance. Here, we demonstrate structurally integrated 3D conductive networks-based flexible strain sensors of hybrid Ag nanorods/nanoparticles(AgNRs/NPs) by combining a droplet-based aerosol jet printing(AJP) process and a feasible transfer process. Structurally integrated 3D conductive networks have been intentionally developed by tweaking droplets deposition behaviors at multi-scale for efficient hybridization and ordered assembly of AgNRs/NPs. The hybrid AgNRs/NPs enhance interfacial conduction and mechanical properties during stretching. In a strain range of 25%, the developed sensor demonstrates an ideal gauge factor of 23.18. When real-time monitoring of finger bending, arm bending, squatting, and vocalization, the fabricated sensors revealed effective responses to human movements. Our findings demonstrate the efficient droplet-based AJP process is particularly capable of developing advanced flexible devices for optoelectronics and wearable electronics applications.

摘要

具有显著可扩展性、稳定性和耐用性的柔性应变传感器对于公共医疗保健至关重要,因为它们能够无创监测重要的健康信号。然而,到目前为止,导电网络一直受到导电组件界面状态不一致的困扰,这阻碍了最终的灵敏度性能。在此,我们通过结合基于液滴的气溶胶喷射印刷(AJP)工艺和可行的转移工艺,展示了基于结构集成三维导电网络的混合银纳米棒/纳米粒子(AgNRs/NPs)柔性应变传感器。通过在多尺度上调整液滴沉积行为,有意开发出结构集成三维导电网络,以实现AgNRs/NPs的高效杂交和有序组装。混合AgNRs/NPs在拉伸过程中增强了界面传导和机械性能。在25%的应变范围内,所开发的传感器显示出23.18的理想应变系数。在对手指弯曲、手臂弯曲、下蹲和发声进行实时监测时,所制造的传感器显示出对人体运动的有效响应。我们的研究结果表明,基于液滴的高效AJP工艺特别能够开发用于光电子和可穿戴电子应用的先进柔性器件。

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