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Photoluminescence characteristics of perovskite Eu-doped (Ba0.9Sr0.1)ZrO3 ceramic

机译:Perovskite Eu-掺杂的光致发光特性(Ba0.9SR0.1)ZrO3陶瓷

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In these BaZrO3-based phosphors, more research works concentrated upon Eu-doped BaZrO3, which is a red-orange long-lasting material. In this study, the solid-state reaction method was used to synthesize the (Ba0.9Sr0.1)ZrO3:Eu0.025 (BSZO-Eu) ceramic was synthesized at the temperature range of 1000°C-1400°C for 2 h. We had found that the optimum excitation optical wavelength of the BSZO-Eu powders were 271 nm and the maximum intensity of the emission spectrum of the BSZO-Eu powders increased with increasing sintering temperature. We had found that the optimum excitation optical wavelength of the BSZO-Eu powders were 271 nm and the maximum intensity of the emission spectrum of the BSZO-Eu powders increased with increasing sintering temperature.
机译:在这些基于Bazro3的磷光体中,更多的研究作品集中在欧盟掺杂的Bazro3上,这是一种红橙色持久材料。在该研究中,使用固态反应方法合成(Ba0.9SR0.1)ZrO3:Eu0.025(Bszo-Eu)陶瓷在1000℃-1400℃的温度范围内合成2小时。我们发现,BSZO-EU粉末的最佳激发光学波长为271nm,并且BSZO-EU粉末的发射光谱的最大强度随着烧结温度的增加而增加。我们发现,BSZO-EU粉末的最佳激发光学波长为271nm,并且BSZO-EU粉末的发射光谱的最大强度随着烧结温度的增加而增加。

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