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Reusable and Recyclable Graphene Masks with Outstanding Superhydrophobic and Photothermal Performances.
Zhong, Hong; Zhu, Zhaoran; Lin, Jing; Cheung, Chi Fai; Lu, Vivien L; Yan, Feng; Chan, Ching-Yuen; Li, Guijun.
  • Zhong H; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Zhu Z; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Lin J; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Cheung CF; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Lu VL; Department of Building Services Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Yan F; Department of Applied Physics, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Chan CY; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
  • Li G; State Key Laboratory of Ultra-Precision Machining Technology, Department of Industrial and Systems Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong 999077, China.
ACS Nano ; 14(5): 6213-6221, 2020 05 26.
Article in English | MEDLINE | ID: covidwho-115548
ABSTRACT
The 2019 coronavirus outbreak (COVID-19) is affecting over 210 countries and territories, and it is spreading mainly by respiratory droplets. The use of disposable surgical masks is common for patients, doctors, and even the general public in highly risky areas. However, the current surgical masks cannot self-sterilize in order to reuse or be recycled for other applications. The resulting high economic and environmental costs are further damaging societies worldwide. Herein, we reported a unique method for functionalizing commercially available surgical masks with outstanding self-cleaning and photothermal properties. A dual-mode laser-induced forward transfer method was developed for depositing few-layer graphene onto low-melting temperature nonwoven masks. Superhydrophobic states were observed on the treated masks' surfaces, which can cause the incoming aqueous droplets to bounce off. Under sunlight illumination, the surface temperature of the functional mask can quickly increase to over 80 °C, making the masks reusable after sunlight sterilization. In addition, this graphene-coated mask can be recycled directly for use in solar-driven desalination with outstanding salt-rejection performance for long-term use. These roll-to-roll production-line-compatible masks can provide us with better protection against this severe virus. The environment can also benefit from the direct recycling of these masks, which can be used for desalinating seawater.
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Full text: Available Collection: International databases Database: MEDLINE Main subject: Respiratory Protective Devices / Aerosols / Graphite / Masks Type of study: Prognostic study Language: English Journal: ACS Nano Year: 2020 Document Type: Article Affiliation country: Acsnano.0c02250

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Full text: Available Collection: International databases Database: MEDLINE Main subject: Respiratory Protective Devices / Aerosols / Graphite / Masks Type of study: Prognostic study Language: English Journal: ACS Nano Year: 2020 Document Type: Article Affiliation country: Acsnano.0c02250