Facile green fabrication of nanostructural Ni-doped ZnO hollow sphere as an advanced photocatalytic material for dye degradation
Author:
Funder
Tarbiat Modares University
Publisher
Elsevier BV
Reference42 articles.
1. Research progress of perovskite materials in photocatalysis- and photovoltaics-related energy conversion and environmental treatment;Wang;Chem. Soc. Rev.,2015
2. 1-Butyl-3-methylimidazolium tetrafluoroborate functionalized ZnO nanoparticles for removal of toxic organic dyes;Chaudhary;J. Mol. Liq.,2016
3. Flower-like core-shell Fe3O4@MnO2 microspheres: synthesis and selective removal of Congo red dye from aqueous solution;Yang;J. Mol. Liq.,2017
4. Nitrogen-doped titanium dioxide as visible-light-sensitive photocatalyst: designs, developments, and prospects;Asahi;Chem. Rev.,2014
5. Degradation of emerging pollutants in water under solar irradiation using novel TiO2-ZnO/clay nanoarchitectures;Tobajas;Chem. Eng. J.,2017
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