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Silver and Molybdenum Codoped TiO2: Visible Light Active Photocatalyst for Photoelectrochemical Applications
by
Yi, Zeng
, Wu, Bo
, Fawad, U.
, Khan, Matiullah
, Gul, Sahar Ramin
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electronics and Microelectronics
/ Instrumentation
/ Materials Science
/ Molybdenum
/ Optical and Electronic Materials
/ Photodegradation
/ Solid State Physics
/ Titanium dioxide
/ Titanium oxides
/ X ray photoelectron spectroscopy
/ X-rays
2017
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Silver and Molybdenum Codoped TiO2: Visible Light Active Photocatalyst for Photoelectrochemical Applications
by
Yi, Zeng
, Wu, Bo
, Fawad, U.
, Khan, Matiullah
, Gul, Sahar Ramin
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electronics and Microelectronics
/ Instrumentation
/ Materials Science
/ Molybdenum
/ Optical and Electronic Materials
/ Photodegradation
/ Solid State Physics
/ Titanium dioxide
/ Titanium oxides
/ X ray photoelectron spectroscopy
/ X-rays
2017
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Silver and Molybdenum Codoped TiO2: Visible Light Active Photocatalyst for Photoelectrochemical Applications
by
Yi, Zeng
, Wu, Bo
, Fawad, U.
, Khan, Matiullah
, Gul, Sahar Ramin
in
Characterization and Evaluation of Materials
/ Chemistry and Materials Science
/ Electronics and Microelectronics
/ Instrumentation
/ Materials Science
/ Molybdenum
/ Optical and Electronic Materials
/ Photodegradation
/ Solid State Physics
/ Titanium dioxide
/ Titanium oxides
/ X ray photoelectron spectroscopy
/ X-rays
2017
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Silver and Molybdenum Codoped TiO2: Visible Light Active Photocatalyst for Photoelectrochemical Applications
Journal Article
Silver and Molybdenum Codoped TiO2: Visible Light Active Photocatalyst for Photoelectrochemical Applications
2017
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Overview
To improve the photoelectrochemical properties of TiO
2
, an approach of codoping is introduced to simultaneously tailor the band gap and control the life time of photoexcited electron–hole pairs. Molybdenum doping is used to extend the optical absorption of TiO
2
while silver inclusion in the molybdenum-doped TiO
2
network improves the separation between the photogenerated carriers leading to improved photodegradation response. X-ray photoelectron spectroscopy (XPS) confirmed the existence of dopant atoms in the bulk lattice and the codoped sample exhibits enhanced photodegradation performance compared to monodoped samples. With less structure modifications and stable structure, the silver molybdenum codoped TiO
2
highly improve the wide functionalities of TiO
2
in photoelectrochemical applications.
Publisher
Springer US,Springer Nature B.V
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