| Literature DB >> 35145116 |
Porntipa Pooseekheaw1,2, Winai Thongpan1, Ekkapong Kantarak1, Wattikon Sroila1, Tewasin Kumpika1, Pisith Singjai3,4.
Abstract
Our porous V2O5/TiO2 nanoheterostructure films (with a Ti/V atomic ratio of 1:1) were fabricated via a single-step sparking method using a strong magnetic field (0.5 T) without annealing requirement for the first time. We found that the magnetic flux arrangement has effect on film crystallization, unique morphology, large specific surface area, and surprisingly controllable phase structure of the films. An amorphous TV film was transformed to the TiO2 (anatase/rutile) phase (for TVN) and V2O5-VO2 mixed-phase (for TVH) without destroying the mesopores from an annealing process. Moreover, the TVH sample able to improve the degradation rate up to 270% compared with pre-annealed TV films and up to 30% with post-annealed (400 °C) TVA films. In this paper, the influence of magnetic flux arrangement on structural, morphological, optical, and photocatalytic properties of prepared sample have been investigated and reported.Entities:
Year: 2022 PMID: 35145116 PMCID: PMC8831502 DOI: 10.1038/s41598-022-05015-2
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic diagram of the sparking method under various magnetic flux arrangements.
Figure 2Surface morphology of samples located in different magnetic fluxes arrangements.
Figure 3Raman spectra of prepared samples.
Figure 4High-resolution XPS spectra of (a) Ti 2p, (b) V 2p, and (c) O 1s for prepared samples.
Figure 5(a) Tauc plot, (b) absorption spectra for MB degradation in 1 h, (c) photocatalytic activity of TVH sample, and (d) percent photocatalytic degradation rate.