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首页> 外文期刊>Journal of nanoscience and nanotechnology >Photoluminescence Properties of Nano-Sized BaO-TiO2-SiO2 System-Based Glass-Ceramics Doped with Er2O3 and Eu2O3
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Photoluminescence Properties of Nano-Sized BaO-TiO2-SiO2 System-Based Glass-Ceramics Doped with Er2O3 and Eu2O3

机译:用ER2O3和EU2O3掺杂掺杂基于纳米BaO-TiO2-SiO2玻璃陶瓷的光致发光性能

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摘要

The crystal phase of fresnoite (Ba2TiSi2O8) produced from BaO-TiO2-SiO2 (hereinafter referred to as BTS) has nonlinear optical properties and is capable of emitting ultraviolet light. It can also be utilized in various fields, such as optical communications and optoelectronic devices. In this study, Er and Eu were added to BTS-based glass and a glass-ceramic containing a nano-sized fresnoite crystal phase was prepared through an appropriate heat treatment process. The relationships among the type of crystal phase, the microstructure, the light transmittance capabilities and the PL characteristics of the prepared glass-ceramic were analyzed. In the glass-ceramic of BTS doped with Er, 428 nm light was emitted when excitation light with a 268 nm wavelength was applied, while in the glass-ceramic of BTS doped with Eu, 613 nm red light was emitted when excitation light with a wavelength 394 nm was supplied. The produced fresnoite-based glass-ceramic exhibits transparency and luminescence characteristics due to the nano-sized crystal phase. Therefore, it is likely to find use in various fields in the future.
机译:由BaO-TiO2-SiO2(以下简称BTS)制备的氟碳铈矿(Ba2TiSi2O8)的晶相具有非线性光学性质,并且能够发射紫外光。它还可用于各种领域,如光通信和光电子器件。在本研究中,将Er和Eu添加到BTS基玻璃中,通过适当的热处理工艺制备了含有纳米氟碳石晶相的微晶玻璃。分析了所制备微晶玻璃的晶相类型、显微结构、透光性能和发光特性之间的关系。在掺铒的BTS微晶玻璃中,当施加268 nm波长的激发光时,发出428 nm的光;而在掺铕的BTS微晶玻璃中,当提供394 nm波长的激发光时,发出613 nm的红光。由于纳米晶相的存在,所制备的氟碳石基微晶玻璃具有透明性和发光特性。因此,它很可能在未来的各个领域得到应用。

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