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分层纳米修饰聚乳酸纳米纤维用于抗湿性呼吸保健和高精度疾病诊断。

Hierarchically Nano-Decorated Poly(lactic acid) Nanofibers for Humidity-Resistant Respiratory Healthcare and High-Accuracy Disease Diagnosis.

机构信息

School of Safety Engineering, China University of Mining and Technology, Xuzhou 221116, China.

Jiangsu Engineering Research Center of Dust Control and Occupational Protection, Xuzhou 221008, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 2;16(39):52476-52486. doi: 10.1021/acsami.4c11843. Epub 2024 Sep 19.

Abstract

The application of biodegradable and eco-friendly poly(lactic acid) (PLA) nanofibrous membranes (NFMs) toward respiratory healthcare has long been thwarted by the poor electroactivity and low surface activity of PLA. Herein, we unravel a microwave-assisted route to fabricate rod-like ZnO nanodielectrics, which were decorated with dopamine (ZnO@PDA) and anchored at the PLA nanofibers via an electrospinning-electrospray approach. The PLA/ZnO@PDA NFMs featured a substantially elevated specific surface area (up to 20.7 m/g), increased dielectric constant (nearly 1.8) and a surface potential as high as 9.5 kV, resulting in superior air filtering performance (99.45% for PM, 94.1 Pa, 32 L/min) compared with the pure PLA counterpart (90.04%, 169.0 Pa, 32 L/min). The notably increased electroactivity endowed the PLA/ZnO@PDA NFMs with significant improvements in triboelectric properties (output voltage of 11.5 V at 10 N, 0.5 Hz), laying down the cornerstone for self-powered monitoring of personal respiration. More importantly, a deep learning-assisted diagnostic system was developed based on respiration-driven signal patterns, enabling intelligent and real-time disease diagnosis with 100% accuracy for the protective membranes. The proposed hierarchical nanodecoration strategy opens up new possibilities for engendering eco-friendly nanofibers with an exceptional combination of efficient respiratory healthcare and intelligent diagnosis.

摘要

可生物降解和环保的聚乳酸(PLA)纳米纤维膜(NFM)在呼吸保健方面的应用长期以来一直受到 PLA 电活性差和表面活性低的阻碍。在此,我们揭示了一种微波辅助的方法来制备棒状 ZnO 纳米电介质,其通过静电纺丝-静电喷雾方法用多巴胺(ZnO@PDA)进行修饰并固定在 PLA 纳米纤维上。PLA/ZnO@PDA NFM 具有显著增加的比表面积(高达 20.7 m/g)、增加的介电常数(接近 1.8)和高达 9.5 kV 的表面电势,与纯 PLA 相比,具有卓越的空气过滤性能(PM 为 99.45%,压降为 94.1 Pa,流量为 32 L/min)。显著提高的电活性使 PLA/ZnO@PDA NFM 的摩擦电性能得到显著改善(在 10 N、0.5 Hz 时输出电压为 11.5 V),为个人呼吸的自供电监测奠定了基础。更重要的是,基于呼吸驱动的信号模式开发了一个深度学习辅助的诊断系统,能够以 100%的准确率对防护膜进行智能和实时的疾病诊断。所提出的分层纳米装饰策略为具有高效呼吸保健和智能诊断功能的环保纳米纤维开辟了新的可能性。

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