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Raman and luminescence studies on phase transition of EuNbO4 under high pressure

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【作者】 侯纪伟陈桥郜婵代如成张建武王中平张增明丁泽军

【Author】 HOU Jiwei;CHEN Qiao;GAO Chan;DAI Rucheng;ZHANG Jianwu;WANG Zhongping;ZHANG Zengming;DING Zejun;Department of Physics University of Science and Technology of China;The Centre for Physical Experiments University of Science and Technology of China;Hefei National Laboratory for Physical Sciences at Microscale University of Science and Technology of China;

【机构】 Department of Physics University of Science and Technology of ChinaThe Centre for Physical Experiments University of Science and Technology of ChinaHefei National Laboratory for Physical Sciences at Microscale University of Science and Technology of China

【摘要】 Raman and luminescence studies on the phase transition of europium orthoniobates(EuNbO4) under high pressure were performed. The pressure dependent Raman spectra revealed that an irreversible phase transition from monoclinic phase to M’-fergusonite phase of EuNbO4 occurred at 7.3 GPa, and the two phases coexisted over a pressure range from 7.3 to 13.7 GPa. An obvious discontinuity on luminescence intensity ratio between 5D0 →7F2 and 5D0→7F1 transitions was observed with increasing pressure, indicating also that a phase transition occurred at 7.3 GPa, which was in agreement with the high pressure Raman spectra data. Meanwhile, the Raman and luminescence spectra in the temperature range of 20–300 K showed the structure stability at low temperatures.

【Abstract】 Raman and luminescence studies on the phase transition of europium orthoniobates(EuNbO4) under high pressure were performed. The pressure dependent Raman spectra revealed that an irreversible phase transition from monoclinic phase to M’-fergusonite phase of EuNbO4 occurred at 7.3 GPa, and the two phases coexisted over a pressure range from 7.3 to 13.7 GPa. An obvious discontinuity on luminescence intensity ratio between 5D0 →7F2 and 5D0→7F1 transitions was observed with increasing pressure, indicating also that a phase transition occurred at 7.3 GPa, which was in agreement with the high pressure Raman spectra data. Meanwhile, the Raman and luminescence spectra in the temperature range of 20–300 K showed the structure stability at low temperatures.

【基金】 Project supported by National Natural Science Foundation of China(11074232,11274288,21002097,11304300,11174265);the National Basic Research Program of China(2011CB932801,2009CB939901,2012CB933702);Ministry of Education of China(20123402110034)
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2014年09期
  • 【分类号】O657.37
  • 【被引频次】2
  • 【下载频次】57
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