2016
DOI: 10.14233/ajchem.2016.19697
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Preparation and Properties of Fe3O4/SiO2/TiO2 Core-Shell Nanocomposite as Recoverable Photocatalyst

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Cited by 16 publications
(20 citation statements)
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“…A strong peak at ∼588 cm −1 of Fe 3 O 4 was obtained which was assigned to the Fe-O stretching vibration. There was a new strong band around 1,087 cm −1 in Figure 7B that came from the Si-O bond in SiO 2 (Kunarti et al, 2016) and the vibration band for the fingerprint of Ti-O-Ti bond in Figure 6C, which is located around 700 cm -1 (Kunarti et al, 2016;Doosti et al, 2018). The presence of a strong peak at 827 cm -1 is due to the V-O stretching vibration of VO 4 which has been displayed in Figure 7D (Marsooli et al, 2019).…”
Section: Characterizationmentioning
confidence: 82%
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“…A strong peak at ∼588 cm −1 of Fe 3 O 4 was obtained which was assigned to the Fe-O stretching vibration. There was a new strong band around 1,087 cm −1 in Figure 7B that came from the Si-O bond in SiO 2 (Kunarti et al, 2016) and the vibration band for the fingerprint of Ti-O-Ti bond in Figure 6C, which is located around 700 cm -1 (Kunarti et al, 2016;Doosti et al, 2018). The presence of a strong peak at 827 cm -1 is due to the V-O stretching vibration of VO 4 which has been displayed in Figure 7D (Marsooli et al, 2019).…”
Section: Characterizationmentioning
confidence: 82%
“…Figure 7 shows the FTIR spectrum of Fe 3 O 4 (a), Fe 3 O 4 /SiO 2 (b), Fe 3 O 4 /SiO 2/ TiO 2 (N 1 ) (c), Fe 3 O 4 /SiO 2/ TiO 2 /CeVO 4 (N 5 )(d), as well as N 5 sample after a complete photocatalytic reaction period with 20 ppm of MB dye. At all spectrums, the presence of water is shown by the appearance of the bending mode at around ∼1,600 cm -1 and the stretching mode at around ∼3,300 cm -1 (Kunarti et al, 2016;Doosti et al, 2018). A strong peak at ∼588 cm −1 of Fe 3 O 4 was obtained which was assigned to the Fe-O stretching vibration.…”
Section: Characterizationmentioning
confidence: 86%
“…There is more TiO 2 material bonded and the surface area becomes larger, which will lead to the improvement of the photoreduction activity of Ag(I) ions. In addition, the nanosized TiO 2 particles have a larger band-gap with a higher photoreduction capability, hence the strong reducing potential of the photogenerated electrons has made by the core-shell nanoparticles for reduction reactions 14 .…”
Section: Resultsmentioning
confidence: 99%
“…Xue et al found that the presence of silica layer between Fe 3 O 4 and TiO 2 nanoparticles could increase the lifetime of hole (h + ) product and yield a better photoreactivity 10 . The magnetic photocatalyst material has been applied for degradation of organic pollutants [11][12][13][14] . In this contribution, we report on the magnetic photocatalyst of Fe 3 O 4 /SiO 2 /TiO 2 core-shell for silver ion photoreduction.…”
Section: Introductionmentioning
confidence: 99%
“…TiO2 as a photocatalyst can also be utilized in water purification, air purifiers, cancer therapies, hospital sterilization and self-cleaning equipment [4]. In recent years, TiO2 photocatalysts are widely used in water purification as they are ideal for the degradation of organic and inorganic pollutants [3][4][5][6].…”
Section: Introductionmentioning
confidence: 99%