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Kim, Gun-Ho
SoftHeat Lab.
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Superhydrophobic and Self-Sterilizing Surgical Mask with Spray-Coated Carbon Nanotubes

Author(s)
Soni, RiteshJoshi, Shalik RamKarmacharya, MamataMin, HyegiKim, Shin KwanKumar, SumitKim, Gun-HoCho, Yoon-KyoungLee, Chang Young
Issued Date
2021-11-30
URI
https://scholarworks.unist.ac.kr/handle/201301/76509
Fulltext
https://www.mrs.org/meetings-events/fall-meetings-exhibits/2021-mrs-fall-meeting/call-for-papers/symposium-sessions-detail/2021_mrs_fall_meeting/sb05
Citation
2021 Materials Research Society Fall Meeting & Exhibit
Abstract
Coronavirus has affected the entire global community owing to its transmission through respiratory droplets. This has led to the mandatory usage of surgical masks for protection against this lethal virus in many countries. However, the currently available disposable surgical masks have limitations in terms of their hydrophobicity and reusability. Here, we report a single-step spray-coating technique for the formation of a superhydrophobic layer of single-walled carbon nanotubes (SWCNTs) on melt-blown polypropylene (PP) surgical mask. The sprayed SWCNTs form nanospike-like architecture on the PP surface, increasing the static contact angle for water from 113.6° ± 3.0° to 156.2° ± 1.8° and showing superhydrophobicity for various body fluids such as urine, tear, blood, sweat, and saliva. The CNT-coated surgical masks also display an outstanding photothermal response with an increase in their surface temperature to more than 90 °C within 30 s of 1 sun solar illumination, confirming its self-sterilization ability. Owing to the cumulative effect of the superhydrophobicity and photothermal performance of the SWCNTs, the CNT-coated masks show 99.99% higher bactericidal performance towards Escherichia coli than pristine masks. Further, the virucidal ability of the SWCNT-coated mask, tested by using virus-like particles, was found to be almost 99% under solar illumination. As the spray-coating method is easily scalable, the nanotube-coated mask provides cost-effective personal protection against respiratory diseases.
Publisher
Materials Research Society

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