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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Highly colloidal luminescent porous Tb-doped gadolinium oxide nanoparticles: Photophysical and luminescent properties
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Highly colloidal luminescent porous Tb-doped gadolinium oxide nanoparticles: Photophysical and luminescent properties

机译:高胶体发光多孔Tb掺杂的氧化钆氧化物纳米颗粒:光药和发光特性

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摘要

Highly colloidal luminescent Gd2O3:Tb nanoparticles(NPs) were prepared by urea-based homogeneous co-precipitation process. X-ray diffraction pattern (XRD), transmission electron microscopy(TEM), energy dispersive x-ray analysis(EDX), thermogravimetric analysis(TGA), zeta potential, Fourier transform infrared(FTIR), FT-Raman, UV/Visible and photoluminescence spectroscopy to examine the crystallographic, phase purity, shape & size, thermal stability, surface chemistry, optical and photoluminescence properties. XRD results exhibited the single phase, highly pure cubic phase Gd2O3:Tb nanocrystals with an average grain size of 10-20 nm. The Gd2O3:Tb NPs exhibits attractive thermal, optical and luminescent properties for their use in long-term biological studies because of high thermal, photo-stability and strong emission sensitivities in the visible region. Optical features of Gd2O3:Tb NPs were examined in aqueous media and estimated energy band gap on the basis of absorption spectra. An observed strong peak located at 359 cm(-1) is assigned to the F-g Raman active mode of cubic phase of nanocrystalline Gd2O3. The luminescence spectra show well dominant green emission transition in between 535-560 nm (D-5(4)- F-7(5)) under monitoring UV light (325 nm). Optically active, aqueous sensitivities, porous surface and strong luminescent NPs as revealed from TEM micrographs could be a promising candidate for future fluorescent biomedical applications.
机译:通过基于尿素的均相共沉淀方法制备高胶体发光Gd2O3:Tb纳米颗粒(NPS)。 X射线衍射图案(XRD),透射电子显微镜(TEM),能量分散X射线分析(EDX),热重分析(TGA),Zeta电位,傅里叶变换红外(FTIR),FT-Raman,UV /可见和光致发光光谱检查晶体,相纯度,形状和尺寸,热稳定性,表面化学,光学和光致发光性能。 XRD结果表现出单相,高度纯度的立方相Gd2O3:Tb纳米晶体,平均晶粒尺寸为10-20nm。 GD2O3:Tb NPS表现出具有吸引的热敏,光学和发光性能,以便在长期生物学研究中使用,因为高热,光稳定性和可见区域中的强发射敏感性。 GD2O3的光学特征:在水介质中检查TB NP和基于吸收光谱的估计能带隙。观察到位于359cm(-1)的观察到的强峰被分配到纳米晶Gd2O3的立方相的F-G拉曼活性模式。在监测UV光(325nm)下,发光光谱显示在535-560nm(D-5(4) - & F-7(5))之间的显性绿色发射转变。光学活性的,含水敏感性,多孔表面和强发光NPS,如TEM显微照片所显示的,可能是未来荧光生物医学应用的有希望的候选者。

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