BiVO 4/CeO 2 nanocomposites with high visible-light-induced photocatalytic activity
Preparation of bismuth vanadate and cerium dioxide (BiVO 4/CeO 2) nanocomposites as visible-light photocatalysts was successfully obtained by coupling a homogeneous precipitation method with hydrothermal techniques. The BiVO 4/CeO 2 nanocomposites with different mole ratios were synthesized and char...
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th-cmuir.6653943832-67502014-08-30T03:51:11Z BiVO 4/CeO 2 nanocomposites with high visible-light-induced photocatalytic activity Wetchakun N. Chaiwichain S. Inceesungvorn B. Pingmuang K. Phanichphant S. Minett A.I. Chen J. Preparation of bismuth vanadate and cerium dioxide (BiVO 4/CeO 2) nanocomposites as visible-light photocatalysts was successfully obtained by coupling a homogeneous precipitation method with hydrothermal techniques. The BiVO 4/CeO 2 nanocomposites with different mole ratios were synthesized and characterized by X-ray diffraction (XRD), Raman spectroscopy, and transmission electron microscopy (TEM). Absorption range and band gap energy, which are responsible for the observed photocatalyst behavior, were investigated by UV-vis diffuse reflectance (UV-vis DR) spectroscopy. Photocatalytic activities of the prepared samples were examined by studying the degradation of model dyes Methylene Blue, Methyl Orange, and a mixture of Methylene Blue and Methyl Orange solutions under visible-light irradiation (>400 nm). Results clearly show that the BiVO 4/CeO 2 nanocomposite in a 0.6:0.4 mol ratio exhibited the highest photocatalytic activity in dye wastewater treatment. © 2012 American Chemical Society. 2014-08-30T03:51:11Z 2014-08-30T03:51:11Z 2012 Article 19448244 10.1021/am300812n http://www.scopus.com/inward/record.url?eid=2-s2.0-84864192433&partnerID=40&md5=30e32515cea6c85a12a44243b523e402 http://cmuir.cmu.ac.th/handle/6653943832/6750 English |
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Preparation of bismuth vanadate and cerium dioxide (BiVO 4/CeO 2) nanocomposites as visible-light photocatalysts was successfully obtained by coupling a homogeneous precipitation method with hydrothermal techniques. The BiVO 4/CeO 2 nanocomposites with different mole ratios were synthesized and characterized by X-ray diffraction (XRD), Raman spectroscopy, and transmission electron microscopy (TEM). Absorption range and band gap energy, which are responsible for the observed photocatalyst behavior, were investigated by UV-vis diffuse reflectance (UV-vis DR) spectroscopy. Photocatalytic activities of the prepared samples were examined by studying the degradation of model dyes Methylene Blue, Methyl Orange, and a mixture of Methylene Blue and Methyl Orange solutions under visible-light irradiation (>400 nm). Results clearly show that the BiVO 4/CeO 2 nanocomposite in a 0.6:0.4 mol ratio exhibited the highest photocatalytic activity in dye wastewater treatment. © 2012 American Chemical Society. |
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Article |
author |
Wetchakun N. Chaiwichain S. Inceesungvorn B. Pingmuang K. Phanichphant S. Minett A.I. Chen J. |
spellingShingle |
Wetchakun N. Chaiwichain S. Inceesungvorn B. Pingmuang K. Phanichphant S. Minett A.I. Chen J. BiVO 4/CeO 2 nanocomposites with high visible-light-induced photocatalytic activity |
author_facet |
Wetchakun N. Chaiwichain S. Inceesungvorn B. Pingmuang K. Phanichphant S. Minett A.I. Chen J. |
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Wetchakun N. |
title |
BiVO
4/CeO
2 nanocomposites with high visible-light-induced photocatalytic activity |
title_short |
BiVO
4/CeO
2 nanocomposites with high visible-light-induced photocatalytic activity |
title_full |
BiVO
4/CeO
2 nanocomposites with high visible-light-induced photocatalytic activity |
title_fullStr |
BiVO
4/CeO
2 nanocomposites with high visible-light-induced photocatalytic activity |
title_full_unstemmed |
BiVO
4/CeO
2 nanocomposites with high visible-light-induced photocatalytic activity |
title_sort |
bivo
4/ceo
2 nanocomposites with high visible-light-induced photocatalytic activity |
publishDate |
2014 |
url |
http://www.scopus.com/inward/record.url?eid=2-s2.0-84864192433&partnerID=40&md5=30e32515cea6c85a12a44243b523e402 http://cmuir.cmu.ac.th/handle/6653943832/6750 |
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1681420672185663488 |