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Up-conversion glass-ceramic devices of individual emission of red, green and blue and their applications

机译:更新的玻璃陶瓷器件,单个排放红色,绿色和蓝色及其应用

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When rare earth-doped oxyfluoride glasses are heat-treated at the first crystallization temperatures, the glasses turn into glass-ceramics in which rare earth-containing nanocrystals uniformly precipitate in the glass matrices. These glass-ceramics are transparent to the naked eye as well no heat-treated glasses. Since rare earth ions exist as solid-solution ions in the precipitated fluoride crystals with low phonon energies, these glass-ceramics exhibit highly efficient up-conversion luminescence by laser light excitation. In the present work, rare earth-doped oxyfluoride glass-ceramics in the SiO_2-PbF_2-ErF_3-TmF_3-GdF_3, SiO_2-PbF_2-HoF_3-YbF_3-GdF_3, and SiO_2-PbF_2-TmF_3-YbF_3-GdF_3 systems were developed. Under 980 nm LD excitation the respective glass-ceramics gave selectively red-, green-, and blue-upconversion luminescence with high efficiency. Emission wavelengths in the center of gravity are 666, 543, and 479 nm, respectively. Except for these selective emissions, however, other emissions at different wavelengths are also observed, though extremely weak. Removal of these extra emissions was possible by using appropriate filter-glasses, presenting the up-conversion devices of individual emission of red (R), green (G), and blue (B). On the other hand, laminas of the mixtures of resin and the glass-ceramic powders exhibited extremely high enhancement of upconversion emission intensities. The developed upconversion glass-ceramics in which RGB emissions are independently available by 980 nm laser irradiation offer a variety of applications. Some of the expected utilization as optics devices is proposed.
机译:当稀土掺杂的氧化氧化物玻璃在第一结晶温度下进行热处理时,眼镜变成玻璃陶瓷,其中含有稀土的纳米晶体在玻璃基质中均匀地沉淀。这些玻璃陶瓷对肉眼透明,也没有经热处理的眼镜。由于稀土离子作为具有低声子能量的沉淀的氟化物晶体中的固溶液离子,因此这些玻璃陶瓷通过激光激发表现出高效的上转换发光。在本作工作中,开发了SiO_2-PBF_2-ERF_3-TMF_3-GDF_3,SiO_2-PBF_2-HOF_3-YBF_3-GDF_3和SIO_2-PBF_2-TMF_3-YBF_3-GDF_3系统中的稀土掺杂氧化氧化物玻璃 - 陶瓷。在980nm LD激发下,相应的玻璃陶瓷具有高效率的选择性红色,绿色和蓝色上变化的发光。重心的发射波长分别为666,543和479nm。然而,除了这些选择性排放之外,还观察到不同波长的其他排放,但极弱。通过使用适当的过滤玻璃,可以通过使用适当的过滤器玻璃去除这些额外排放,呈现红色(R),绿色(G)和蓝色(B)的各个排放的上转换装置。另一方面,树脂和玻璃粉末的混合物的Laminas表现出极高的增强增强的增强增强。开发的上转换玻璃陶瓷,其中RGB排放独立地提供980nm激光照射提供各种应用。提出了一些预期的利用作为光学器件设备。

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