Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Stability of TiO2-coated ZnO photocatalytic thin films for photodegradation of methylene blue

View through CrossRef
Investigations on the stability of titanium dioxide (TiO2)-coated zinc oxide (ZnO) thin films upon repeated uses for methylene blue (MB) degradation were conducted. Photocorrosion of ZnO, upon exposure to light in aqueous media, can affect the photocatalytic performance due to loss of material. Hence, coating with a more stable metal oxide was seen as a way to suppress the effects of photocorrosion. In this study, homogeneous wurtzite ZnO nanostructured thin films were obtained from thermal oxidation of sputter-deposited Zn films on glass substrates. TiO2 was subsequently deposited onto the ZnO nanostructured thin films using a reactive magnetron sputtering system in an admixture of argon and oxygen gases. After deposition, the thin films were annealed at 500 °C for 1 h. The photocatalytic efficiency and stability of the thin films were investigated after multiple degradation cycles. The addition of a TiO2 film increased the surface roughness and blueshifted the absorption edge of the ZnO thin films. The coated films obtained up to 94.3% degradation efficiency of MB after a 180-min exposure cycle using a solar light simulator. After three cycles, degradation efficiency decreased for the uncoated ZnO photocatalysts. Analysis of the MB solution after one degradation cycle revealed the presence of Zn2+ ions attributed to the effects of photocorrosion. Higher Zn2+ concentrations were observed when the ZnO surface is uncoated. This study showed that the addition of a thin, antiphotocorrosion material such as TiO2 layer decreased the dissolution of ZnO caused by photocorrosion without a significant reduction in the photodegradation efficiency.
Title: Stability of TiO2-coated ZnO photocatalytic thin films for photodegradation of methylene blue
Description:
Investigations on the stability of titanium dioxide (TiO2)-coated zinc oxide (ZnO) thin films upon repeated uses for methylene blue (MB) degradation were conducted.
Photocorrosion of ZnO, upon exposure to light in aqueous media, can affect the photocatalytic performance due to loss of material.
Hence, coating with a more stable metal oxide was seen as a way to suppress the effects of photocorrosion.
In this study, homogeneous wurtzite ZnO nanostructured thin films were obtained from thermal oxidation of sputter-deposited Zn films on glass substrates.
TiO2 was subsequently deposited onto the ZnO nanostructured thin films using a reactive magnetron sputtering system in an admixture of argon and oxygen gases.
After deposition, the thin films were annealed at 500 °C for 1 h.
The photocatalytic efficiency and stability of the thin films were investigated after multiple degradation cycles.
The addition of a TiO2 film increased the surface roughness and blueshifted the absorption edge of the ZnO thin films.
The coated films obtained up to 94.
3% degradation efficiency of MB after a 180-min exposure cycle using a solar light simulator.
After three cycles, degradation efficiency decreased for the uncoated ZnO photocatalysts.
Analysis of the MB solution after one degradation cycle revealed the presence of Zn2+ ions attributed to the effects of photocorrosion.
Higher Zn2+ concentrations were observed when the ZnO surface is uncoated.
This study showed that the addition of a thin, antiphotocorrosion material such as TiO2 layer decreased the dissolution of ZnO caused by photocorrosion without a significant reduction in the photodegradation efficiency.

Related Results

Study on fabrication of ZnO@TiO2 nanocomposite for perozone degradation of amoxicillin from aqueous solution
Study on fabrication of ZnO@TiO2 nanocomposite for perozone degradation of amoxicillin from aqueous solution
In this study, a simple method for fabrication of a ZnO@TiO2 nanocomposite was developed to degrade amoxicillin (AMX) from aqueous solution by heterogeneous ...
Effect of synthesized carbon quantum dots on the photocatalytic properties of ZnO
Effect of synthesized carbon quantum dots on the photocatalytic properties of ZnO
ABSTRACT. In this work, synthesized carbon quantum dots (CQDs) and zinc oxide nanoparticles (ZnO NPs) are used to form ZnO/CQDs nanocomposite. The characterization of this nanocomp...
The Hydrothermal Synthesis of TiO2-GO with Enhance Photocatalytic Activity
The Hydrothermal Synthesis of TiO2-GO with Enhance Photocatalytic Activity
A composite material consisting of titanium dioxide and graphene oxide (TiO2–GO) was synthesized through a hydrothermal reaction. This reaction involved the use of Ti(SO4)2 in an e...
Alternative Entrances: Phillip Noyce and Sydney’s Counterculture
Alternative Entrances: Phillip Noyce and Sydney’s Counterculture
Phillip Noyce is one of Australia’s most prominent film makers—a successful feature film director with both iconic Australian narratives and many a Hollywood blockbuster under his ...
Sol-Gel Multilayered Niobium (Vanadium)-Doped TiO2 for CO Sensing and Photocatalytic Degradation of Methylene Blue
Sol-Gel Multilayered Niobium (Vanadium)-Doped TiO2 for CO Sensing and Photocatalytic Degradation of Methylene Blue
Multilayered TiO2 films doped either with Niobium or Vanadium (1.2 at. %) were deposited by the sol-gel dip coating method on c-Si and glass substrates. The films on glass substrat...
Spray Coated Nanocellulose Films Productions, Characterization and Application
Spray Coated Nanocellulose Films Productions, Characterization and Application
Nanocellulose (NC) is a biodegradable, renewable and sustainable material. It has strong potential to use as a functional material in various applications such as barriers, coating...
Performance comparison of dye-sensitized solar cells by using different metal oxide- coated TiO2 as the photoanode
Performance comparison of dye-sensitized solar cells by using different metal oxide- coated TiO2 as the photoanode
In order to increase the conversion efficiency of dye-sensitized solar cells, TiO2 photoanode surface is often covered with a metal oxide layer to form a core-shell composite struc...
Fast Removal of Methylene Blue via Adsorption-Photodegradation on TiO2/SBA-15 Synthesized by Slow Calcination
Fast Removal of Methylene Blue via Adsorption-Photodegradation on TiO2/SBA-15 Synthesized by Slow Calcination
TiO2/SBA-15 photocatalysts were successfully prepared by impregnating low loading titania to SBA-15 via slow calcination. The photocatalyst is efficient for fast methylene blue rem...

Back to Top