Zhao Yi-Sa, Huang Jie, Yang Xingjian, Wang Weqiang, Yu Deng-Guang, He Hua, Liu Ping, Du Kewei
School of Health Science and Engineering, University of Shanghai for Science and Technology, Shanghai, China.
The Third Affiliated Hospital, Naval Medical University, Shanghai, China.
Front Bioeng Biotechnol. 2025 Mar 20;13:1533367. doi: 10.3389/fbioe.2025.1533367. eCollection 2025.
Electrospinning is a type of electrohydrodynamics that utilizes high-voltage electrostatic force to stretch a polymer solution into nanofibers under the influence of an electric field, with most of the fibers falling onto a collector. This technology is favored by researchers across various fields due to its simple and inexpensive device for producing nanofibers in a straightforward manner. Nanofibers prepared through electrospinning have a high specific surface area and high porosity. Electrospinning technology shows extensive potential, especially within biomedical sensors. This article provides a systematic overview of the factors influencing electrospinning, the parameters of the electrospinning process, the types of electrospun nanofibers, and the applications of electrospinning technology in the field of sensors, including wearable sensors, pressure sensors, and glucose sensors. The paper summarizes the research progress in this field and points out the direction of development for electrospinning technology, as well as the future challenges.
静电纺丝是一种电流体动力学技术,它利用高压静电力在电场作用下将聚合物溶液拉伸成纳米纤维,大部分纤维会落到收集器上。由于该技术通过简单且低成本的设备就能直接生产纳米纤维,因此受到各个领域研究人员的青睐。通过静电纺丝制备的纳米纤维具有高比表面积和高孔隙率。静电纺丝技术展现出广泛的潜力,尤其是在生物医学传感器领域。本文系统地概述了影响静电纺丝的因素、静电纺丝过程的参数、电纺纳米纤维的类型以及静电纺丝技术在传感器领域的应用,包括可穿戴传感器、压力传感器和葡萄糖传感器。论文总结了该领域的研究进展,指出了静电纺丝技术的发展方向以及未来面临的挑战。