Magnetic Ni-Doped TiO 2 Photocatalysts for Disinfection of Escherichia coli Bacteria

Ni-doped TiO nanoparticles have been synthesized by a modified sol-gel method. The crystal phase composition, particle size, and magnetic and optical properties of the samples were comprehensively examined using x-ray diffraction analysis, transmission electron microscopy, Brunauer-Emmett-Teller sur...

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Published inJournal of electronic materials p. 1
Main Authors Nguyen, Khang Cao, Nguyen, Nghia Manh, Duong, Van Quoc, Van Nguyen, Khanh, Nguyen, Hung Manh, Dao, Thang Viet, Van Nguyen, Quang, Nguyen, Duc Anh, Vu, Ha Thi, Dang, Chien Tran, Phan, Hong Ngoc
Format Journal Article
LanguageEnglish
Published United States 25.01.2021
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Abstract Ni-doped TiO nanoparticles have been synthesized by a modified sol-gel method. The crystal phase composition, particle size, and magnetic and optical properties of the samples were comprehensively examined using x-ray diffraction analysis, transmission electron microscopy, Brunauer-Emmett-Teller surface area analysis, Raman spectroscopy, magnetization measurements, and ultraviolet-visible (UV-Vis) absorption techniques. The results showed that the prepared Ni-doped TiO samples sintered at 400°C crystallized completely in anatase phase with average particle size in the range from 8 nm to 10 nm and presented broad visible absorption. The bactericidal efficiency of TiO was effectively enhanced by Ni doping, with an optimum Ni doping concentration of 6% (  = 0.06), at which 95% of were killed after just 90 min of irradiation. Density functional theory (DFT) calculations revealed good agreement with the experimental data. Moreover, the Ni dopant induced magnetic properties in TiO , facilitating its retrieval using a magnetic field after use, which is an important feature for photocatalytic applications.
AbstractList Ni-doped TiO nanoparticles have been synthesized by a modified sol-gel method. The crystal phase composition, particle size, and magnetic and optical properties of the samples were comprehensively examined using x-ray diffraction analysis, transmission electron microscopy, Brunauer-Emmett-Teller surface area analysis, Raman spectroscopy, magnetization measurements, and ultraviolet-visible (UV-Vis) absorption techniques. The results showed that the prepared Ni-doped TiO samples sintered at 400°C crystallized completely in anatase phase with average particle size in the range from 8 nm to 10 nm and presented broad visible absorption. The bactericidal efficiency of TiO was effectively enhanced by Ni doping, with an optimum Ni doping concentration of 6% (  = 0.06), at which 95% of were killed after just 90 min of irradiation. Density functional theory (DFT) calculations revealed good agreement with the experimental data. Moreover, the Ni dopant induced magnetic properties in TiO , facilitating its retrieval using a magnetic field after use, which is an important feature for photocatalytic applications.
Author Nguyen, Khang Cao
Vu, Ha Thi
Nguyen, Duc Anh
Dang, Chien Tran
Dao, Thang Viet
Nguyen, Nghia Manh
Phan, Hong Ngoc
Duong, Van Quoc
Nguyen, Hung Manh
Van Nguyen, Quang
Van Nguyen, Khanh
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  fullname: Phan, Hong Ngoc
  organization: Center for High Technology Development Center, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Cau Giay, Hanoi, Vietnam
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Keywords E. coli
Ni-doped
photocatalytic
TiO2
Language English
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Snippet Ni-doped TiO nanoparticles have been synthesized by a modified sol-gel method. The crystal phase composition, particle size, and magnetic and optical...
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Title Magnetic Ni-Doped TiO 2 Photocatalysts for Disinfection of Escherichia coli Bacteria
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