4.6 Article

Personalized Reusable Face Masks with Smart Nano-Assisted Destruction of Pathogens for COVID-19: A Visionary Road

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 27, 期 20, 页码 6112-6130

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.202004875

关键词

antipathogen; digitally personalized; electrospinning; face masks; light-responsive nanomaterials

资金

  1. First TEAM programme of the Foundation for Polish Science (FNP) [POIR.04.04.00-00-5ED7/18-00]
  2. European Union under the European Regional Development Fund
  3. National Agency for Academic Exchange (NAWA) [PPI/APM/2018/1/00045/U/001]
  4. National Centre for Research and Development (NCBiR)
  5. Ministry of Science and Technology of the People's Republic of China (MoST)
  6. Polish Ministry of Science and Higher Education
  7. Air Force Office of Scientific Research (AFOSR)
  8. Air Force Research Laboratory (AFRL)
  9. U.S. Air Force [FA9550-18-1-0038]
  10. Estonian Research Council [PRG726]
  11. Portuguese FundacAo para a Ciencia e a Tecnologia (FCT)
  12. Centro2020 [UID/Multi/04044/2019, MATIS: CENTRO-01-0145-FEDER-000014-3362, PAMI-ROTEIRO/0328/2013, 022158]
  13. CALIPSOplus [730872]

向作者/读者索取更多资源

The utilization of face masks is crucial in controlling the spread of the COVID-19 pandemic, and nanotechnology can play a key role in developing more comfortable masks with self-disinfection capabilities. This innovative approach opens up new opportunities for medical applications and could greatly benefit frontline personnel and the global community as a whole.
The Coronavirus disease 2019 (COVID-19) emergency has demonstrated that the utilization of face masks plays a critical role in limiting the outbreak. Healthcare professionals utilize masks all day long without replacing them very frequently, thus representing a source of cross-infection for patients and themselves. Nanotechnology is a powerful tool with the capability to produce nanomaterials with unique physicochemical and antipathogen properties. Here, how to realize non-disposable and highly comfortable respirators with light-triggered self-disinfection ability by bridging bioactive nanofiber properties and stimuli-responsive nanomaterials is outlined. The visionary road highlighted in this Concept is based on the possibility of developing a new generation of masks based on multifunctional membranes where the presence of nanoclusters and plasmonic nanoparticles arranged in a hierarchical structure enables the realization of a chemically driven and on-demand antipathogen activities. Multilayer electrospun membranes have the ability to dissipate humidity present within the mask, enhancing the wearability and usability. The photothermal disinfected membrane is the core of these 3D printed and reusable masks with moisture pump capability. Personalized face masks with smart nano-assisted destruction of pathogens will bring enormous advantages to the entire global community, especially for front-line personnel, and will open up great opportunities for innovative medical applications.

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