Acta Metallurgica Sinica (English Letters) ›› 2017, Vol. 30 ›› Issue (10): 1017-1026.DOI: 10.1007/s40195-017-0611-6
Special Issue: 能源材料专辑(2016-2017)
• Orginal Article • Previous Articles Next Articles
Yao Li1, Jian-Lei Kuang1, Yi Lu2, Wen-Bin Cao1,3()
Received:
2017-06-20
Revised:
2017-06-20
Online:
2017-10-10
Published:
2017-10-11
Yao Li, Jian-Lei Kuang, Yi Lu, Wen-Bin Cao. Facile Synthesis, Characterization of Flower-Like Vanadium Pentoxide Powders and Their Photocatalytic Behavior[J]. Acta Metallurgica Sinica (English Letters), 2017, 30(10): 1017-1026.
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Fig. 2 XRD patterns of a as-synthesized sample from a sol prepared at room temperature, coagulated, dried at 60 °C for 6 h, and subjected to heat treatments at 450 °C for 3 h; b compared nanoparticles from a solution dried at 80 °C and subjected to heat treatments at 500 °C for 2 h according to previous report [27]
Fig. 3 XPS spectra of sol dried at 60 °C for 6 h a survey scan, b V2p and O1s core-level spectra, and V2O5 sample annealed at 450 °C, c fully scanned spectrum, d V2p and O1s core-level spectra. Inset is molar ratio of vanadium and oxygen in xerogel
Fig. 4 Typical FESEM and TEM images of the as-prepared samples. a, b FESEM images of xerogel at 60 °C for 6 h, and, c-e FESEM images of V2O5 powders at 450 °C for 3 h. f TEM, g HRTEM images of the V2O5 powders
Fig. 7 a Diffuse reflectance UV-Vis spectrum of flower-like V2O5 powders thermally treated at 450 °C; b Tauc’s plot of (αhυ)2 versus hυ for band gap energy
Fig. 8 a Comparison of photocatalytic performance of the samples by testing the degradation of TBO under visible light irradiation. b Graphical evaluation of the rate constants for mineralization of TBO in the presence of flower-like V2O5 powders under visible light irradiation. c Percentage of TOC removal over flower-like V2O5 powders
Fig. 10 LC-MS spectra of the observed products under visible light for 0-10 h with flower-like V2O5: a the peak at m/z=270 due to compound A; b the peak at m/z=256 attributed to compound B; c the peak at m/z=242 attributed to compound C; d the peaks at m/z=242, 243, 229, 170, and 161 attributed to compounds C, detected C +H, detected D +H, F, and G, respectively; e the peaks at m/z=149 and 116 attributed to compounds H, K, respectively; f the peaks at m/z=149, 133, and 116 attributed to compounds H, J, and K, respectively
Fig. 11 Proposed degradation pathway of TBO dye under visible light irradiation followed by the identification of several intermediates by LC-MS spectral techniques
Fig. 12 LC-MS spectra of the observed products under visible light for 6 h with flower-like V2O5: a the peak at m/z=261 assigned to the ring-opened sulfoxide oxidation product; b the peak at m/z=277 attributed to the sulfone
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