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AC Electroluminescent Processes in Pr3+-Activated (Ba0.4Ca0.6)TiO3 Diphase Polycrystals

机译:Pr3 +活化的(Ba0.4Ca0.6)TiO3双相多晶中的交流电致发光过程

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摘要

We investigated the properties of alternating current (AC)-driven electroluminescence from (Ba0.4Ca0.6)TiO3:Pr3+ diphase polycrystal-based device. The results of crystal phases and micrographs, and the symmetrical dual emissions in one AC cycle, indicate the spontaneous formation of a dielectric/phosphor/dielectric sandwich microstructure in (Ba0.4Ca0.6)TiO3:Pr3+. The electroluminescent device emits a red light of 617 nm, which is attributed to the 1D2-3H4 transition of Pr3+ in the phosphor phase. At a fixed AC frequency, the intensity of electroluminescence exhibits a steep enhancement when applying an increased driving electric field that is beyond a threshold. In a fixed driving electric field, the intensity of electroluminescence shows a rapid rise at low frequencies, but reaches saturation at high frequencies. Based on a double-injection model, we discussed systematically the electroluminescent processes in a whole cycle of AC electric field, which matched well with the experimental data. Our investigation is expected to expand our understanding of such a diphase electroluminescent device, thereby promoting their applications in lighting and displays.
机译:研究了(Ba0.4Ca0.6)TiO3:Pr 3 + 双相多晶器件的交流电驱动电致发光特性。晶体相和显微照片的结果以及一个交流循环中对称的双重发射的结果表明,在(Ba0.4Ca0.6)TiO3:Pr 3 + 。电致发光器件发出617 nm的红光,这归因于荧光粉中Pr 3 + 1 D2- 3 H4跃迁相。在固定的AC频率下,当施加超过阈值的增加的驱动电场时,电致发光强度会急剧增加。在固定的驱动电场中,电致发光的强度在低频下会迅速上升,而在高频下会达到饱和。基于双注入模型,我们系统地讨论了交流电场整个周期中的电致发光过程,与实验数据非常吻合。预期我们的研究将扩大我们对这种双相电致发光器件的理解,从而促进其在照明和显示器中的应用。

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