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Enhanced Antibacterial Property of Sulfate-Doped Ag(3)PO(4) Nanoparticles Supported on PAN Electrospun Nanofibers

Heterojunction nanofibers of PAN decorated with sulfate doped Ag(3)PO(4) nanoparticles (SO(4)(2−)-Ag(3)PO(4)/PAN electrospun nanofibers) were successfully fabricated by combining simple and versatile electrospinning technique with ion exchange reaction. The novel material possessing good flexibility...

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Detalles Bibliográficos
Autores principales: Panthi, Gopal, Hassan, Md. Mehedi, Kuk, Yun-Su, Kim, Ji Yeon, Chung, Hea-Jong, Hong, Seong-Tshool, Park, Mira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7144394/
https://www.ncbi.nlm.nih.gov/pubmed/32204541
http://dx.doi.org/10.3390/molecules25061411
Descripción
Sumario:Heterojunction nanofibers of PAN decorated with sulfate doped Ag(3)PO(4) nanoparticles (SO(4)(2−)-Ag(3)PO(4)/PAN electrospun nanofibers) were successfully fabricated by combining simple and versatile electrospinning technique with ion exchange reaction. The novel material possessing good flexibility could exhibit superior antibacterial property over sulfate undoped species (Ag(3)PO(4)/PAN electrospun nanofibers). FESEM, XRD, FTIR, XPS and DRS were applied to characterize the morphology, phase structure, bonding configuration, elemental composition, and optical properties of the as fabricated samples. FESEM characterization confirmed the successful incorporation of SO(4)(2−)-Ag(3)PO(4) nanoparticles on PAN electrospun nanofibers. The doping of SO(4)(2−) ions into Ag(3)PO(4) crystal lattice by replacing PO(4)(3−) ions can provide sufficient electron-hole separation capability to the SO(4)(2−)-Ag(3)PO(4)/PAN heterojunction to generate reactive oxygen species (ROS) under visible light irradiation and enhances its antibacterial performance. Finally, we hope this work may offer a new paradigm to design and fabricate other types of flexible self-supporting negative-ions-doped heterojunction nanofibers using electrospinning technique for bactericidal applications.