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通过对电活性聚乳酸纳米纤维进行纳米图案化实现高效呼吸防护和智能监测。

High-efficiency respiratory protection and intelligent monitoring by nanopatterning of electroactive poly(lactic acid) nanofibers.

作者信息

Jiang Liang, Zhang Long, He Xinjian, Tang Mengke, Wang Cunmin, Xu Chao, Li Xiang, Zhu Xuanjin, Chen Ruizi, Zhang Yifan, Shao Jiang, Zhang Mingming, Zhu Yabin, Xu Huan

机构信息

School of Materials Science and Physics, China University of Mining and Technology, Xuzhou 221116, China.

Hubei Key Laboratory of Automotive Power Train and Electronic Control, School of Automobile Engineering, Hubei University of Automotive Technology, Shiyan 442002, China.

出版信息

Int J Biol Macromol. 2025 Feb;289:138769. doi: 10.1016/j.ijbiomac.2024.138769. Epub 2024 Dec 12.

DOI:10.1016/j.ijbiomac.2024.138769
PMID:39674489
Abstract

The advent of multifunctional nanofibrous membranes (NFMs) has led to the development of next-generation air filters that are ready to intercept fine particulate matters (PMs) and monitor the respiratory diseases. However, it is still challenging to fabricate biodegradable NFMs featuring the desirable combination of high filtration efficiencies, low air resistance, and intelligent real-time monitoring. Herein, a hierarchical nanopatterning approach was proposed to functionalize the stereocomplexed poly(lactic acid) (PLA) (SC-PLA) nanofibers via the combined electrospinning of SC-PLA and electrospray of CNT@ZIF-8 nanohybrids. The nanopatterned SC-PLA (NSC-PLA) NFMs were characterized by largely increased surface activity and electroactivity, as evidenced by the nearly two-fold increase in surface potential (up to 7.3 kV) and substantial improvements in the dielectric properties. Furthermore, the NSC-PLA NFMs exhibited excellent tribo-output performance, yielding a voltage of as high as 13.5 V for NSC-PLA NFMs loaded 10 % nanohybrids (NSC-PLA10). In particular, the exceptionally high electroactivity and unique protrusion structure together contributed to promote the filtration efficiencies, while providing a low pressure drop (e.g., 96.1 % for PM and 88.3 % for PM, only 67.6 Pa of NSC-PLA10, at 32 L/min). More importantly, NSC-PLA NFMs enabled real-time monitoring of physiological signals during different respiratory states, as evidenced by the output voltages of 17.2, 32.9 and 37.5 mV for normal breath, fast breath and cough recorded by NSC-PLA10. The proposed NSC-PLA NFMs show enormous potential in the fields of air filtration and real-time respiratory monitoring, thus providing ecofriendly solutions to personal health management.

摘要

多功能纳米纤维膜(NFMs)的出现推动了下一代空气过滤器的发展,这种过滤器能够拦截细颗粒物(PMs)并监测呼吸系统疾病。然而,制造具有高过滤效率、低空气阻力和智能实时监测等理想组合的可生物降解NFMs仍然具有挑战性。在此,我们提出了一种分级纳米图案化方法,通过立体复合聚乳酸(PLA)(SC-PLA)的静电纺丝和CNT@ZIF-8纳米杂化物的电喷雾相结合,对SC-PLA纳米纤维进行功能化。纳米图案化的SC-PLA(NSC-PLA)NFMs的特征在于表面活性和电活性大大增加,表面电位几乎增加了两倍(高达7.3 kV)以及介电性能的显著改善证明了这一点。此外,NSC-PLA NFMs表现出优异的摩擦输出性能,对于负载10%纳米杂化物的NSC-PLA NFMs(NSC-PLA10),产生高达13.5 V的电压。特别地,极高的电活性和独特的突起结构共同促进了过滤效率,同时提供了低压力降(例如,在32 L/min时,NSC-PLA10对PM的过滤效率为96.1%,对PM的过滤效率为88.3%,仅为67.6 Pa)。更重要的是,NSC-PLA NFMs能够在不同呼吸状态下实时监测生理信号,NSC-PLA10记录的正常呼吸、快速呼吸和咳嗽的输出电压分别为17.2、32.9和37.5 mV证明了这一点。所提出的NSC-PLA NFMs在空气过滤和实时呼吸监测领域显示出巨大潜力,从而为个人健康管理提供了生态友好的解决方案。

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