电纺纤维基自供能压力传感器的研究进展

Research progress on electrospun fiber-based self-powered pressure sensors

  • 摘要: 传统的压力传感器无法解决长期信号检测过程中的供能和穿戴舒适性问题,给传感器的性能和工作过程产生较大的影响,构建自供能压力传感器以同时实现供电和传感功能成为必要。静电纺丝纳米纤维因其可控的微纳结构、高比表面积和优异的力学性能,在柔性自供能传感器的材料制备和结构优化领域应用广泛。系统介绍了静电纺丝技术和自供能压力传感器的发展和原理,重点阐述自供能压力传感器常用的静电纺丝材料及其在传感器中的制备工艺与性能特点,并展示出电纺纤维基自供能压力传感器的制备策略,为其在柔性电子器件中的应用奠定基础。

     

    Abstract: Traditional pressure sensors cannot address the issues of power supply and wear comfort during long-term signal detection, significantly impacting sensor performance and operational processes. Therefore, constructing self-powered pressure sensors capable of simultaneously achieving power supply and sensing functions has become necessary. Electrospun nanofibers, due to their controllable micro-nano structures, high specific surface area, and excellent mechanical properties, are widely applied in the material preparation and structural optimization of flexible self-powered sensors. This study systematically introduces the development and principles of electrospinning technology and self-powered pressure sensors, focusing on the commonly used electrospinning materials for self-powered pressure sensors and their preparation processes and performance characteristics in sensors. It also demonstrates the preparation strategy of electrospun fiber based self-powered pressure sensors, laying the foundation for their application in flexible electronic devices.

     

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