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- W4293724020 endingPage "1186" @default.
- W4293724020 startingPage "1153" @default.
- W4293724020 abstract "Abstract In recent years, TiO 2 /ZnO hybrid nanostructures have been attracting the interest of the scientific community due to their excellent photoelectrochemical properties. The main advantage of TiO 2 /ZnO hybrid nanostructures over other photocatalysts based on semiconductor materials lies in their ability to form heterojunctions in which the valence and conduction bands of both semiconductors are intercalated. This factor produces a decrease in the band gap and the recombination rate and an increase in the light absorption range. The aim of this review is to perform a revision of the main methods to synthesise TiO 2 /ZnO hybrid nanostructures by ZnO deposition on TiO 2 nanotubes using electrochemical processes. Electrochemical synthesis methods provide an easy, fast, and highly efficient route to carry out the synthesis of nanostructures such as nanowires, nanorods, nanotubes, etc. They allow us to control the stoichiometry, thickness and structure mainly by controlling the voltage, time, temperature, composition of the electrolyte, and concentration of monomers. In addition, a study of the most promising applications for TiO 2 /ZnO hybrid nanostructures has been carried out. In this review, the applications of dye-sensitised solar cell, photoelectrocatalytic degradation of organic compounds, photoelectrochemical water splitting, gas sensors, and lithium-ion batteries have been highlighted." @default.
- W4293724020 created "2022-08-31" @default.
- W4293724020 creator A5009731529 @default.
- W4293724020 creator A5012450641 @default.
- W4293724020 creator A5051473161 @default.
- W4293724020 creator A5057989093 @default.
- W4293724020 creator A5059014081 @default.
- W4293724020 date "2022-08-29" @default.
- W4293724020 modified "2023-10-18" @default.
- W4293724020 title "Synthesis and applications of TiO<sub>2</sub>/ZnO hybrid nanostructures by ZnO deposition on TiO<sub>2</sub> nanotubes using electrochemical processes" @default.
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