Microwave-assisted synthesis of barium molybdate by a citrate complex method and oriented aggregation
BaMoO 4 powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by microwave irradiation. The citrate complex precursors were heat-treated at temperatures from 300 to 500 °C for 3 h. Crystallization of the BaMoO 4...
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Published in: | Materials research bulletin Vol. 40; no. 9; pp. 1468 - 1476 |
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Abstract | BaMoO
4 powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by microwave irradiation. The citrate complex precursors were heat-treated at temperatures from 300 to 500
°C for 3
h. Crystallization of the BaMoO
4 powders were detected at 350
°C, and completed at a temperature of 400
°C. TEM image of the BaMoO
4 product obtained above 400
°C revealed spindle-rods-like or flake-like morphology. The anisotropic growth habit of BaMoO
4 leads to the oriented aggregation, which is attributed to the high chemical potentials of the intrinsic structure of BaMoO
4. The BaMoO
4 powder prepared at 500
°C showed the strongest photoluminescent intensity. |
---|---|
AbstractList | BaMoO{sub 4} powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by microwave irradiation. The citrate complex precursors were heat-treated at temperatures from 300 to 500 deg. C for 3 h. Crystallization of the BaMoO{sub 4} powders were detected at 350 deg. C, and completed at a temperature of 400 deg. C. TEM image of the BaMoO{sub 4} product obtained above 400 deg. C revealed spindle-rods-like or flake-like morphology. The anisotropic growth habit of BaMoO{sub 4} leads to the oriented aggregation, which is attributed to the high chemical potentials of the intrinsic structure of BaMoO{sub 4}. The BaMoO{sub 4} powder prepared at 500 deg. C showed the strongest photoluminescent intensity. BaMoO 4 powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by microwave irradiation. The citrate complex precursors were heat-treated at temperatures from 300 to 500 °C for 3 h. Crystallization of the BaMoO 4 powders were detected at 350 °C, and completed at a temperature of 400 °C. TEM image of the BaMoO 4 product obtained above 400 °C revealed spindle-rods-like or flake-like morphology. The anisotropic growth habit of BaMoO 4 leads to the oriented aggregation, which is attributed to the high chemical potentials of the intrinsic structure of BaMoO 4. The BaMoO 4 powder prepared at 500 °C showed the strongest photoluminescent intensity. |
Author | Ryu, Jeong Ho Shim, Kwang Bo Yoon, Jong-Won Lim, Chang Sung |
Author_xml | – sequence: 1 givenname: Jeong Ho surname: Ryu fullname: Ryu, Jeong Ho email: jimihen@ihanyang.ac.kr organization: Department of Ceramic Engineering, CPRC, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Korea – sequence: 2 givenname: Jong-Won surname: Yoon fullname: Yoon, Jong-Won organization: Department of Ceramic Engineering, CPRC, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Korea – sequence: 3 givenname: Chang Sung surname: Lim fullname: Lim, Chang Sung organization: Department of Adv. Mat. Sci. & Eng., CPRC, Hanseo University, Seosan 356-706, Korea – sequence: 4 givenname: Kwang Bo surname: Shim fullname: Shim, Kwang Bo organization: Department of Ceramic Engineering, CPRC, Hanyang University, 17 Haengdang-dong, Seongdong-gu, Seoul 133-791, Korea |
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Snippet | BaMoO
4 powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by... BaMoO{sub 4} powders, which have scheelite type structure, were successfully synthesized at low temperatures by a modified citrate complex method assisted by... |
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SubjectTerms | A. Ceramics AGGLOMERATION ANISOTROPY B. Chemical synthesis BARIUM C. Electron microscopy CERAMICS CHEMICAL PREPARATION CITRATES COMPLEXES CRYSTAL GROWTH CRYSTALLIZATION D. Luminescence ELECTRON MICROSCOPY HEAT TREATMENTS IRRADIATION MATERIALS SCIENCE MICROWAVE RADIATION MOLYBDATES MORPHOLOGY PHOTOLUMINESCENCE |
Title | Microwave-assisted synthesis of barium molybdate by a citrate complex method and oriented aggregation |
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