Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates
© 2015 Pleiades Publishing, Ltd. The effect of Ag doping on Bi 2 MoO 6 was studied in this research. Ag-doped Bi 2 MoO 6 nanoplates were synthesized by a hydrothermal method at 180°C for 20 h. X-ray powder diffraction (XRD) and selected area electron diffraction (SAED) confirm that the products ha...
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th-cmuir.6653943832-440362018-04-25T07:44:59Z Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates Anukorn Phuruangrat Nuengruethai Ekthammathat Phattranit Dumrongrojthanath Somchai Thongtem Titipun Thongtem Agricultural and Biological Sciences © 2015 Pleiades Publishing, Ltd. The effect of Ag doping on Bi 2 MoO 6 was studied in this research. Ag-doped Bi 2 MoO 6 nanoplates were synthesized by a hydrothermal method at 180°C for 20 h. X-ray powder diffraction (XRD) and selected area electron diffraction (SAED) confirm that the products have orthorhombic Bi 2 MoO 6 structure. Bi 2 MoO 6 nanoplates were detected by transmission electron microscopy (TEM). X-ray photoelectron spectroscopy (XPS) shows peaks with binding energies of 368.84 and 374.87 eV which could be attributed to Ag 3d 5/2 and Ag 3d 3/2 , confirming that Ag is present in the Bi 2 MoO 6 matrix. Raman and FTIR spectra show the vibration of asymmetric and symmetric stretching and bending modes of MoO 6 octahedrons. The optical properties of products were characterized by UV-Vis spectroscopy. They show strong absorption in UV-Vis region. 2018-01-24T04:37:20Z 2018-01-24T04:37:20Z 2015-12-01 Journal 00360244 2-s2.0-84946924574 10.1134/S0036024415130051 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84946924574&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/44036 |
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Agricultural and Biological Sciences Anukorn Phuruangrat Nuengruethai Ekthammathat Phattranit Dumrongrojthanath Somchai Thongtem Titipun Thongtem Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
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© 2015 Pleiades Publishing, Ltd. The effect of Ag doping on Bi 2 MoO 6 was studied in this research. Ag-doped Bi 2 MoO 6 nanoplates were synthesized by a hydrothermal method at 180°C for 20 h. X-ray powder diffraction (XRD) and selected area electron diffraction (SAED) confirm that the products have orthorhombic Bi 2 MoO 6 structure. Bi 2 MoO 6 nanoplates were detected by transmission electron microscopy (TEM). X-ray photoelectron spectroscopy (XPS) shows peaks with binding energies of 368.84 and 374.87 eV which could be attributed to Ag 3d 5/2 and Ag 3d 3/2 , confirming that Ag is present in the Bi 2 MoO 6 matrix. Raman and FTIR spectra show the vibration of asymmetric and symmetric stretching and bending modes of MoO 6 octahedrons. The optical properties of products were characterized by UV-Vis spectroscopy. They show strong absorption in UV-Vis region. |
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Anukorn Phuruangrat Nuengruethai Ekthammathat Phattranit Dumrongrojthanath Somchai Thongtem Titipun Thongtem |
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Anukorn Phuruangrat Nuengruethai Ekthammathat Phattranit Dumrongrojthanath Somchai Thongtem Titipun Thongtem |
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Anukorn Phuruangrat |
title |
Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
title_short |
Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
title_full |
Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
title_fullStr |
Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
title_full_unstemmed |
Hydrothermal synthesis, structure, and optical properties of pure and silver-doped Bi<inf>2</inf>MoO<inf>6</inf> nanoplates |
title_sort |
hydrothermal synthesis, structure, and optical properties of pure and silver-doped bi<inf>2</inf>moo<inf>6</inf> nanoplates |
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2018 |
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https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84946924574&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/44036 |
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