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In this study, Pluronic F127 (EO106PO70EO106) copolymer was adopted for incorporating carbon into ZnO and improves its porosity through a polymer-assisted thermal pyrolysis at 500 C. The crystal phase, morphology, porosity, light absorption properties and carbon species of the received C-doped ZnO were carefully characterized. The origin of the visible-light response of the C-doped ZnO was interpreted via valance band XPS and rst-principle simulation using CASTEP package. The photocatalysis performance of ZnO and C-doped ZnO was comparatively evaluated under visible light to conclude the roles of C-doping
In this study, Pluronic F127 (EO106PO70EO106) copolymer was adopted for incorporating carbon into ZnO and improves its porosity through a polymer-assisted thermal pyrolysis at 500 C. The crystal phase, morphology, porosity, light absorption properties and carbon species of the received C-doped ZnO were carefully characterized. The origin of the visible-light response of the C-doped ZnO was interpreted via valance band XPS and rst-principle simulation using CASTEP package. The photocatalysis performance of ZnO and C-doped ZnO was comparatively evaluated under visible light to conclude the roles of C-doping