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A Hierarchically Nanostructured Cellulose Fiber-Based Triboelectric Nanogenerator for Self-Powered Healthcare Products

机译:用于自供电保健产品的分层纳米结构纤维素纤维摩擦纳米发电机

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摘要

Rapid progress in nanotechnology allows us to develop a large number of innovative wearables such as activity trackers, advanced textiles, and healthcare devices. However, manufacturing processes for desirable nanostructure are usually complex and expensive. Moreover, materials used for these devices are mainly derived from nonrenewable resources. Therefore, it poses growing problems for living environment, and causes incompatible discomfort for human beings with long-time wearing. Here, a self-powered cellulose fiber based triboelectric nanogenerator (cf-TENG) system is presented through developing 1D eco-friendly cellulose microfibersanofibers (CMFs/CNFs) into 2D CMFs/CNFs/Ag hierarchical nanostructure. Silver nanofibers membrane is successfully introduced into the cf-TENG system by using CMFs/CNFs as template, which shows excellent antibacterial activity. Enabled by its desirable porous nanostructure and unique electricity generation feature, the cf-TENG system is capable of removing PM2.5 with high efficiency of 98.83% and monitoring breathing status without using an external power supply. This work provides a novel and sustainable strategy for self-powered wearable electronics in healthcare applications, and furthermore paves a way for next-generation flexible, biocompatible electronics.
机译:纳米技术的飞速发展使我们能够开发大量创新的可穿戴设备,例如活动追踪器,高级纺织品和医疗保健设备。然而,用于期望的纳米结构的制造过程通常是复杂且昂贵的。此外,用于这些设备的材料主要来自不可再生资源。因此,它给生活环境带来了日益严重的问题,并且长时间佩戴给人类带来了不相容的不适感。在此,通过将一维生态友好型纤维素微纤维/纳米纤维(CMFs / CNFs)开发为二维CMFs / CNFs / Ag分级纳米结构,提出了一种基于自供电纤维素纤维的摩擦电纳米发电机(cf-TENG)系统。以CMFs / CNFs为模板,成功地将银纳米纤维膜引入到cf-TENG系统中,具有很好的抗菌活性。凭借其理想的多孔纳米结构和独特的发电功能,cf-TENG系统能够以98.83%的高效率去除PM2.5,并且无需使用外部电源即可监测呼吸状态。这项工作为医疗保健应用中的自供电可穿戴电子设备提供了一种新颖且可持续的策略,并且为下一代柔性,生物相容性电子设备铺平了道路。

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