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Yin, L.J. (author), Dierre, B.F.P.R. (author), Sekiguchi, Takashi (author), van Ommen, J.R. (author), Hintzen, H.T.J.M. (author), Cho, Yujin (author)
To modify the luminescence properties of Ce<sup>3+</sup>-doped Y<sub>3</sub>Al<sub>5</sub>O<sub>12</sub> (YAG) phosphors, they have been coated with a carbon layer by chemical vapor deposition and subsequently heat-treated at high temperature under N<sub>2</sub> atmosphere. Luminescence of the carbon coated YAG:Ce<sup>3+</sup> phosphors has...
journal article 2017
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Yin, L.J. (author), Ji, Wei Wei (author), Liu, Shi Yu (author), He, Wei Dong (author), Zhao, Lin (author), Xu, Xin (author), Fabre, A. (author), Dierre, B.F.P.R. (author), Lee, Ming Hsien (author), van Ommen, J.R. (author), Hintzen, H.T.J.M. (author)
Synthesizing pure phase Ba<sub>3</sub>Si<sub>6</sub>O<sub>9</sub>N<sub>4</sub> by the conventional solid-state reaction method is challenging because of easily formed secondary phase Ba<sub>3</sub>Si<sub>6</sub>O<sub>12</sub>N<sub>2</sub> showing similar crystal structure. In this work, an alternative low temperature synthesis method is...
journal article 2016
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Yin, L.J. (author), Dong, Juntao (author), Wang, Yinping (author), Zhang, Bi (author), Zhou, Zheng Yang (author), Jian, Xian (author), Wu, Mengqiang (author), Xu, Xin (author), van Ommen, J.R. (author), Hintzen, H.T.J.M. (author)
Many strategies have been adopted to improve thermal degradation of phosphors. Because of the stability and high transmittance of graphene, here we report a novel method of carbon coating on BaMgAl<sub>10</sub>O<sub>17</sub>:Eu<sup>2+</sup> (BAM) phosphor particles through chemical vapor deposition. The chemical composition, microstructure,...
journal article 2016
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Yin, L.J. (author), Chen, G.Z (author), Wang, C. (author), Xu, X. (author), Hao, L.Y. (author), Hintzen, H.T.J.M. (author)
A series of Si-N or Eu-Li doped CeAl11O18 and CeAl12O18N phosphors are prepared by solid–state reaction. Their structure and luminescence are researched carefully. Si-N doping with the concentration less than 8% can be successfully dissolved into CeAl11O18 crystal lattice and doesn't change the matrix structure, only resulting in crystal lattice...
journal article 2014
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