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首页> 外文期刊>Solid state sciences >Designing of luminescent GdPO4:Eu@LaPO4@SiO2 core/shell nanorods: Synthesis, structural and luminescence properties
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Designing of luminescent GdPO4:Eu@LaPO4@SiO2 core/shell nanorods: Synthesis, structural and luminescence properties

机译:发光GDPO4的设计:EU @ LAPO4 @ SiO2核心/壳纳米码:合成,结构和发光性能

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摘要

GdPO4:Eu3+ (core) and GdPO4:Eu@LaPO4 (core/shell) nanorods (NRs) were successfully prepared by urea based co-precipitation process at ambient conditions which was followed by coating with amorphous silica shell via the sol-gel chemical route. The role of surface coating on the crystal structure, crystallinity, morphology, solubility, surface chemistry and luminescence properties were well investigated by means of X-ray diffraction (XRD), transmission electron microscopy (TEM), energy dispersive X-ray (EDX) analysis, Fourier Transform Infrared (FTIR), UV-Vis, and photoluminescence spectroscopy. XRD pattern revealed highly purified, well-crystalline, single phase-hexagonal-rhabdophane structure of GdPO4 crystal. The TEM micrographs exhibited highly crystalline and narrow size distributed rod-shaped GdPO4:Eu3+ nanostructures with average width 14-16 nm and typical length 190-220 nm. FTIR spectra revealed characteristic infrared absorption bands of amorphous silica. High absorbance in a visible region of silica modified core/shell/Si NRs in aqueous environment suggests the high solubility along with colloidal stability. The photoluminescence properties were remarkably enhanced after growth of undoped LaPO4 layers due to the reduction of nonradiative transition rate. The advantages of presented high emission intensity and high solubility of core/shell and core/shell/Si NRs indicated the potential applications in monitoring biological events. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:GDPO4:EU3 +(核心)和GDPO4:EU @ LAPO4(核心/壳)纳米棒(NRS)通过尿素基共沉淀法在环境条件下成功制备,然后通过溶胶 - 凝胶化学途径涂覆与非晶二氧化硅壳涂覆。通过X射线衍射(XRD),透射电子显微镜(TEM),能量分散X射线(EDX),通过X射线衍射(XRD),能量分散X射线(EDX)良好地研究了表面涂层对晶体结构,结晶度,形态,溶解度,表面化学和发光性能的作用分析,傅里叶变换红外(FTIR),UV-Vis和光致发光光谱。 XRD图案揭示了高度纯化,结晶,单相 - 六方晶二酚的GDPO4晶体。 TEM显微照片表现出高度结晶和窄尺寸分布的棒状GDPO4:Eu3 +纳米结构,平均宽度为14-16nm,典型的长度190-220nm。 FTIR光谱揭示了无定形二氧化硅的特征红外吸收带。在含水环境中二氧化硅改性核/壳/ SiNS的可见区域中的高吸光度表明高溶解度以及胶体稳定性。由于非接种过渡率的降低,未掺杂的LAPO4层的生长后,光致发光性能显着增强。呈现出高排放强度和核心/壳和核/壳/ Si NRS的高发射强度和高溶解度的优点表明了监测生物事件中的潜在应用。 (c)2017年Elsevier Masson SAS。版权所有。

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