4.3 Article

Synthesis of CoTiO3 nanoparticles with enhanced photocatalytic degradation

期刊

MICRO & NANO LETTERS
卷 14, 期 8, 页码 840-844

出版社

WILEY
DOI: 10.1049/mnl.2018.5025

关键词

visible spectra; surface recombination; surface morphology; catalysis; nanoparticles; photochemistry; scanning electron microscopy; ultraviolet spectra; nanofabrication; X-ray diffraction; transmission electron microscopy; titanium compounds; X-ray photoelectron spectra; nanocomposites; Fourier transform infrared spectra; enhanced photocatalytic degradation; simple cost hydrothermal method; MB; magnetic mass; surface morphology; optical characteristics; scanning electron microscopy; transmission electron microscopy; X-ray diffraction; X-ray photoelectron spectroscopy; ultraviolet-visible absorption measurements; degradation percentage; enhanced photocatalytic activities; specific surface area; surface recombination; photo-generated charge carriers; degradation rate; photocatalytic behaviour; magnetic behaviour; methylene blue degradation; Fourier transform infrared spectroscopy; mesoporous cobalt titanium oxide nanoparticles; methylene blue decolourisation; nanocomposites; water purification; environmental remediation; time 90; 0 min; CoTiO3

资金

  1. National Science Foundation for Distinguished Young Scholars of China [61525107]
  2. School Foundation for North University of China [110246]
  3. Shanxi Science Foundation of China [201801D221197]
  4. Shanxi Scholarship Council of China [2017-094]
  5. National Natural Science Foundation of China [61501408]
  6. Fund for Shanxi '1331 Project' Key Subject Construction

向作者/读者索取更多资源

The mesoporous CoTiO3 nanoparticles, which have been successfully prepared by a fast, simple and low-cost hydrothermal method, show good decolourisation and degradation of methylene blue (MB). The synthesised samples can be recovered easily from solution by a magnetic mass. Surface morphology, structure, composition, and optical characteristics of the prepared CoTiO3 were determined using scanning electron microscopy, transmission electron microscopy, X-ray diffraction, X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy, and ultraviolet-visible absorption measurements. The degradation percentage of MB was nearly 95% at an initial concentration of 10 ppm in 90 min. Such enhanced photocatalytic activities of synthesised CoTiO3 were attributed to a large specific surface area (54.22 m(2) g(-1)) and defects density, which was useful for restraining surface recombination of photo-generated charge carriers. The recovery of CoTiO3 nanoparticles was about 85% and the degradation rate of MB remained 80% after five cycles. As a whole, the CoTiO3 nanocomposites give a synergistic effect in photocatalytic and magnetic behaviour and indicate that the synthesised samples have a promising potential particularly for water purification and environmental remediation.

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