Dual-Bionic Nano-Groove Structured Nanofibers for Breathable and Moisture-Wicking Protective Respirators

21 Pages Posted: 13 Jul 2022

See all articles by Yuyao Li

Yuyao Li

Tiangong University

Yuezhen Hua

Tiangong University

Zekai Ji

Tiangong University

Zheng Wu

Tiangong University

Jie Fan

Tiangong University

Yong Liu

Tiangong University

Abstract

Coronavirus disease 2019 (COVID-19) pandemic makes protective respirators highly demanded. Herein, dual-bionic nano-groove structured (NGS) nanofibers are fabricated to serve as protective, breathable and moisture-wicking respirator materials. The creativity of this design is that the tailoring of dual-bionic nano-groove structure, combined with the strong polarity and hydrophilicity of electrospinning polymer, not only endows the nanofibrous materials with improved particle capture ability but also enable them to wick away and transmit breathing moisture. Benefitting from the synthetic effect of hierachical structure and the intrinsic property of polymers, the resulting NGS nanofibrous membranes show a high filtration efficiency of 99.96%, a low pressure drop of 110 Pa, and a high moisture transmission rate of 5.67 kg m -2 d -1 at the same time. More importantly, the sharp increase of breathing resistance caused by the condensation of exhaled moisture is avoided, overcoming the bottleneck faced by traditional nonwovens and paving a new way for developing protective respirators with high wear comfortability.

Keywords: electrospun nanofibers, groove structure, wicking effect, Air filtration, protective respirators

Suggested Citation

Li, Yuyao and Hua, Yuezhen and Ji, Zekai and Wu, Zheng and Fan, Jie and Liu, Yong, Dual-Bionic Nano-Groove Structured Nanofibers for Breathable and Moisture-Wicking Protective Respirators. Available at SSRN: https://ssrn.com/abstract=4157494 or http://dx.doi.org/10.2139/ssrn.4157494

Yuyao Li

Tiangong University ( email )

Yuezhen Hua

Tiangong University ( email )

China

Zekai Ji

Tiangong University ( email )

China

Zheng Wu

Tiangong University ( email )

China

Jie Fan

Tiangong University ( email )

China

Yong Liu (Contact Author)

Tiangong University ( email )

China

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