Impurity doping is one of the common approaches to enhance the photoactivity of semiconductor nanomaterials by increasing photon-capture efficiency in the visible light range. However, many studies on the doping effects have produced inconclusive and conflicting results. There are some misleading assumptions and errors that are frequently made in the data interpretation, which can lead to inconsistent results about the doping effects on photocatalysis. One of them is the determination of the location of dopants. Even using advanced analytical techniques, it is still challenging to distinguish between bulk modification and surface modification. The paper provides a case study of transition-metal-doped ZnO nanoparticles, whereby demonstrating...
Cataloged from PDF version of article.Oxygen vacancies (VOs) in ZnO are well-known to enhance photoc...
The surface electronic structure of ZnO nanoparticles has been studied with photoemission and x-ray ...
Throughout the past decades, doped-ZnO has been widely used in various optical, electrical, magnetic...
Impurity doping is one of the common approaches to enhance the photoactivity of semiconductor nanoma...
In this study, we have investigated the effect of doping with cobalt and manganese oxide on the phot...
Biocompatibility and the ability to create tumor-killing reactive oxygen species have drawn increasi...
8 figures.-- Supplementary information available.The controlled modification of the electronic prope...
University of Technology Sydney. Faculty of Science.ZnO is a wide bandgap semiconductor with a direc...
ZnO deposited on nanoporous Au showed photocatalytic decomposition toward methyl orange under visibl...
The detrimental effects of UV radiation are having a significant impact on our life and environment....
Semiconductor nanocrystal doping has stimulated broad interest for many applications including solar...
The most suitable method to improve the photocatalytic activity of semiconductors is doping of noble...
International audienceZinc oxide (ZnO) is a wide bandgap semiconductor possessing excellent optical ...
Thesis (Ph.D.)--University of Washington, 2014This thesis presents investigations of semiconductor n...
The effect of cobalt doping on semiconductors materials synthesized via solution and hydrothermal me...
Cataloged from PDF version of article.Oxygen vacancies (VOs) in ZnO are well-known to enhance photoc...
The surface electronic structure of ZnO nanoparticles has been studied with photoemission and x-ray ...
Throughout the past decades, doped-ZnO has been widely used in various optical, electrical, magnetic...
Impurity doping is one of the common approaches to enhance the photoactivity of semiconductor nanoma...
In this study, we have investigated the effect of doping with cobalt and manganese oxide on the phot...
Biocompatibility and the ability to create tumor-killing reactive oxygen species have drawn increasi...
8 figures.-- Supplementary information available.The controlled modification of the electronic prope...
University of Technology Sydney. Faculty of Science.ZnO is a wide bandgap semiconductor with a direc...
ZnO deposited on nanoporous Au showed photocatalytic decomposition toward methyl orange under visibl...
The detrimental effects of UV radiation are having a significant impact on our life and environment....
Semiconductor nanocrystal doping has stimulated broad interest for many applications including solar...
The most suitable method to improve the photocatalytic activity of semiconductors is doping of noble...
International audienceZinc oxide (ZnO) is a wide bandgap semiconductor possessing excellent optical ...
Thesis (Ph.D.)--University of Washington, 2014This thesis presents investigations of semiconductor n...
The effect of cobalt doping on semiconductors materials synthesized via solution and hydrothermal me...
Cataloged from PDF version of article.Oxygen vacancies (VOs) in ZnO are well-known to enhance photoc...
The surface electronic structure of ZnO nanoparticles has been studied with photoemission and x-ray ...
Throughout the past decades, doped-ZnO has been widely used in various optical, electrical, magnetic...