摩擦电效应
纳米发生器
生物相容性材料
材料科学
纳米技术
静电纺丝
纳米纤维
纳米颗粒
光电子学
复合材料
生物医学工程
医学
聚合物
压电
作者
Sagar Sardana,Zenvir Singh,Anshul Kumar Sharma,Navdeep Kaur,Pratap Kumar Pati,Aman Mahajan
标识
DOI:10.1016/j.snb.2022.132507
摘要
The development of innovative devices that enables real-time monitoring of physiological activities and environmental conditions for healthcare applications has gained momentum in recent years. However, it is still a challenge to fabricate a self-sustainable wearable device with inherent comfort, long-time wearing and electrostatic discharge (EDS) safety for the monitoring of human-status. Herein, we developed a self-powered humidity sensor using an electrospun anisotropic triboelectric nanogenerator (A-TENG) composed of aligned MXene nanofibers (NFs) and cellulose acetate (CA) NFs. Importantly, such developed anisotropic structure of TENG exhibits its potential in sensitive moisture detection upon fast adsorption/desorption of water molecules due to increased pore length of prepared NFs. Moreover, it also benefits the device in reducing the EDS risks based on the working orientation of A-TENG. The practical application of detecting the skin moisture using finger-tapping is also demonstrated. Furthermore, CA NFs render superior antibacterial performance due to the high release of loaded copper nanoparticles at targeted skin surfaces, enabling long-time wearability of A-TENG. The above findings suggest that the highly ordered alignment of collected NFs is found to be favorable for the development of future-generation wearable devices. • Fabrication of MXene nanofibers-based humidity sensor driven by anisotropic triboelectric nanogenerator (A-TENG). • Ordered pore length of aligned nanofibers fastens adsorption/desorption process. • Self-diagnostic of skin moisture via finger-tapping. • Copper nanoparticles loaded A-TENG inhibits skin-bacterial growth for long-time wearing.
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