Published 2019 | Version v1
Dataset

Data from: TiO2 thin films by ultrasonic spray pyrolysis as photocatalytic material for air purification

  • 1. Tallinn University of Technology

Description

In this study, we showed the TiO2 thin films deposited onto window glass are practicable for air purification and self-cleaning applications. TiO2 films were deposited onto window glass by ultrasonic spray pyrolysis method. Different deposition temperatures were used in the range of 250-450 °C. The structural, morphological, optical properties and surface chemical composition were investigated to understand probable factors affecting photocatalytic performance and wettability of the TiO2 thin films. The TiO2 thin films were smooth, compacted, and adhered adequately on the substrate with a thickness in the range of 100-240 nm. X-Ray diffractometer revealed that all the TiO2 thin films consisted of anatase phase structure with the mean crystallite size in the range of 13 to 35 nm. The optical measurements showed that the deposited films were highly transparent (∼85%). The wettability test results showed that the TiO2 thin films sprayed at 350 and 450 °C and annealed at 500 °C for 1 h were superhydrophilic. The photocatalytic activity of the films was tested for the degradation of methyl tert-butyl ether in multi-section plug-flow reactor. The photocatalytic test results exhibited the highest amount of conversion of methyl tert-butyl ether, ~80%, belong to the TiO2 film deposited at 350 °C.

Technical info (English)

Usage notes

XRD data

The raw data of XRD patterns belong to TiO2 thin films (Fig.3a).

Raman Spectroscopy

The Raman Spectra of TiO2 films (Fig.3b).

UV-VIS spectroscopy

Total transmittance spectra for TiO2 thin films (Fig.4a).

Band gap Cal.

The raw data about band gap calculations of all samples (Fig.4b).

XPS

The data of oxygen (O1s) core level spectra of the surface of TiO2 films (Fig.5).

Degradation of MTBE

The data and calculations of the degradation of MTBE in the multi-section plug-flow photocatalytic reactor.

Additional details

Related works

Is source of
Journal article: 10.1098/rsos.181578 (DOI)

Dates

Available
2019