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用于发光防伪油墨应用的超精细 Y2O3:Eu3+ 纳米荧光粉的合成与表征。

Synthesis and characterization of ultra-fine Y2O3:Eu3+ nanophosphors for luminescent security ink applications.

机构信息

National Physical Laboratory, Council of Scientific and Industrial Research, Dr K S Krishnan Road, New Delhi-110 012, India.

出版信息

Nanotechnology. 2010 Feb 5;21(5):055607. doi: 10.1088/0957-4484/21/5/055607. Epub 2010 Jan 6.

Abstract

We report a simple method for the synthesis of ultra-fine Eu(3+)-doped yttria (Y(2)O(3)) nanophosphors with an average diameter of approximately 5 nm for development of a transparent colloid that could be used as a luminescent security ink. This has been achieved by suitably substituting Eu(3+) ions at the favorable C(2) symmetry sites of Y(3+) ions and quantum mechanically confining the growth of the nanophosphor using a novel acid-catalyzed sol-gel technique. This is one of the few reports that depict the development of a transparent aqueous-stable Y(2)O(3):Eu(3+) colloidal solution for strategic applications related to security codes. High resolution transmission electron microscopy images showed excellent lattice fringes that in turn support the presence of better crystal quality and enhanced photoluminescence (PL) emission from the Y(1.9)O(3)Eu(0.1)(3+) nanophosphor system. Time resolved emission spectroscopy measurement indicated a PL decay time in the range of a few milliseconds, suitable for making luminescent security ink and other advanced applications in optoelectronic devices and bio-labeling.

摘要

我们报告了一种简单的方法,用于合成平均直径约为 5nm 的超精细 Eu(3+)掺杂氧化钇(Y(2)O(3))纳米荧光粉,以开发一种可用于发光安全墨水的透明胶体。这是通过在 Y(3+)离子的有利 C(2)对称位置适当取代 Eu(3+)离子,并使用新型酸催化溶胶-凝胶技术量子力学限制纳米荧光粉的生长来实现的。这是少数几篇描述开发透明水稳定 Y(2)O(3):Eu(3+)胶体溶液的报告之一,该溶液与与安全码相关的战略应用有关。高分辨率透射电子显微镜图像显示出极好的晶格条纹,这反过来又支持存在更好的晶体质量和增强的 Y(1.9)O(3)Eu(0.1)(3+)纳米荧光粉系统的光致发光(PL)发射。时间分辨发射光谱测量表明 PL 衰减时间在几毫秒范围内,适合制作发光安全墨水和光电设备及生物标记等其他先进应用。

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