Photosensitized Production of Singlet Oxygen via C60 Fullerene Covalently Attached to Functionalized Silica-coated Stainless-Steel Mesh: Remote Bacterial and Viral Inactivation

  • Kim J.
  • Lee H.
  • Lee J.-Y.
  • Park K.-H.
  • Kim W.
  • 외 10명
Citations

WEB OF SCIENCE

44
Citations

SCOPUS

51

초록

This study demonstrates the capability of a C60-based sensitizer to remotely inactivate bacteria and viruses in air. The nucleophilic addition of amine groups attached to SiO2 particles (used as free-standing support or as hosts electrosprayed on a stainless-steel mesh) to the double bonds of C60 led to the production of recyclable sensitizers. The high-yield production of singlet oxygen (1O2) from the immobilized C60 was established by studying the effects of 1O2 quenchers and enhancer on furfuryl alcohol (FFA) oxidation efficiency and wavelength-dependent FFA decay kinetics. We monitored the inactivation rates of Staphylococcus aureus and MS-2 bacteriophage in petri dishes at predetermined distances from the 1O2 source and identified the probability of remote microbial inactivation via 1O2, which occurred up to 10-15 cm from the source. This result accorded with epoxy moiety occurrence as an indication of singlet oxygenation in the Fourier Transform-Infrared spectra of cis-polybutadiene in remote positions. © 2020 Elsevier B.V.

키워드

C60 fullereneHydroxyl radicalPhotosensitized oxidationRemote disinfectionSinglet oxygenAddition reactionsBacteriaFullerenesMesh generationOxygenPolybutadienesSilicaStaphylococcus aureusVirusesC60 fullerenesFourier transform infrared spectraFunctionalized silicaHydroxyl radicalsMicrobial inactivationNucleophilic additionsPhotosensitized oxidationSinglet oxygenStainless steel
제목
Photosensitized Production of Singlet Oxygen via C60 Fullerene Covalently Attached to Functionalized Silica-coated Stainless-Steel Mesh: Remote Bacterial and Viral Inactivation
저자
Kim J.Lee H.Lee J.-Y.Park K.-H.Kim W.Lee J.H.Kang H.-J.Hong S.W.Park H.-J.Lee S.Lee J.-H.Park H.-D.Kim J.Y.Jeong Y.W.Lee J.
DOI
10.1016/j.apcatb.2020.118862
발행일
2020-08
유형
Article
저널명
Applied Catalysis B: Environmental
270