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KY(MoO4)(2):Eu3+ Phosphor: Template-Free Hydrothermal Synthesis and Luminescent Properties

机译:KY(MoO4)(2):Eu3 +荧光粉:无模板水热合成和发光性质

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摘要

KY(MoO4)(2) microcrystals with different morphologies, including rhombic, sheet-like, rectangular plate-like, and hexagon plate-like, have been successfully synthesized via a simple hydrothermal method without using any templates, surfactant, or other organic additives by varying the molar ratios of Y(NO3)(3)/K2MoO4 and pH values of the resultant solutions. X-ray diffraction (XRD), field emission-scanning electron microscopy (FE-SEM), photoluminescence (PL), and photoluminescent excitation spectra (PLE) were employed to characterize the samples. Furthermore, a systematic study on the photoluminescence of Eu3+ doped KY(MoO4)(2) samples has been explored by varying experimental conditions. The strongest red emission can be observed clearly at 616 nm. And by controlling the doping concentration of Eu3+ in KY(MoO4)(2) solutions, it can be seen that the concentration quenching occurs at 25 at.% for Eu3+. These results suggest that the well-crystallized KY(MoO4)(2): Eu3+ microcrystals synthesized in our experiment can be used as a red component for white light emitting diodes (W-LEDs).
机译:通过简单的水热法,无需使用任何模板,表面活性剂或其他有机添加剂,即可成功合成具有不同形态(包括菱形,片状,矩形板状和六角形板状)的KY(MoO4)(2)微晶通过改变Y(NO3)(3)/ K2MoO4的摩尔比和所得溶液的pH值。使用X射线衍射(XRD),场发射扫描电子显微镜(FE-SEM),光致发光(PL)和光致发光激发光谱(PLE)来表征样品。此外,通过不同的实验条件,对Eu3 +掺杂的KY(MoO4)(2)样品的光致发光进行了系统研究。在616 nm处可以清楚地观察到最强的红色发射。通过控制KY(MoO4)(2)溶液中Eu3 +的掺杂浓度,可以看出Eu3 +的浓度猝灭发生在25 at。%。这些结果表明,在我们的实验中合成的结晶良好的KY(MoO4)(2):Eu3 +微晶可用作白色发光二极管(W-LED)的红色组分。

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