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水包油微乳液法合成的发光氧化铈纳米晶体的表面与体积效应。

Surface versus volume effects in luminescent ceria nanocrystals synthesized by an oil-in-water microemulsion method.

机构信息

National Institute for Laser, Plasma and Radiation Physics, P.O. Box MG-36, RO 76900, Bucharest-Magurele, Romania.

出版信息

Phys Chem Chem Phys. 2011 Oct 14;13(38):17135-45. doi: 10.1039/c1cp21135h. Epub 2011 Aug 25.

DOI:10.1039/c1cp21135h
PMID:21869965
Abstract

Pure and europium (Eu(3+)) doped cerium dioxide (CeO(2)) nanocrystals have been synthesized by a novel oil-in-water microemulsion reaction method under soft conditions. In-situ X-ray diffraction and RAMAN spectroscopy, high-resolution transmission electron microscopy, UV/Vis diffuse-reflectance and Fourier transform infrared spectroscopy as well as time-resolved photoluminescence spectroscopy were used to characterize the nanaocrystals. The as-synthesized powders are nanocrystalline and have a narrow size distribution centered on 3 nm and high surface area of ~250 m(2) g(-1). Only a small fraction of the europium ions substitutes for the bulk, cubic Ce(4+) sites in the europium-doped ceria nanocrystals. Upon calcination up to 1000 °C, a remarkable high surface area of ~120 m(2) g(-1) is preserved whereas an enrichment of the surface Ce(4+) relative to Ce(3+) ions and relative strong europium emission with a lifetime of ~1.8 ms and FWHM as narrow as 10 cm(-1) are measured. Under excitation into the UV and visible spectral range, the europium doped ceria nanocrystals display a variable emission spanning the orange-red wavelengths. The tunable emission is explained by the heterogeneous distribution of the europium dopants within the ceria nanocrystals coupled with the progressive diffusion of the europium ions from the surface to the inner ceria sites and the selective participation of the ceria host to the emission sensitization. Effects of the bulk-doping and impregnation with europium on the ceria host structure and optical properties are also discussed.

摘要

通过在温和条件下使用新颖的油包水微乳液反应方法,合成了纯二氧化铈(CeO2)和掺铕(Eu(3+))纳米晶。原位 X 射线衍射和 RAMAN 光谱、高分辨率透射电子显微镜、UV/Vis 漫反射和傅里叶变换红外光谱以及时间分辨光致发光光谱用于对纳米晶进行表征。合成的粉末是纳米晶,具有 3nm 左右的窄尺寸分布和高表面积250m2g-1。只有一小部分的铕离子取代了掺杂氧化铈纳米晶中的体立方 Ce(4+)位。在高达 1000°C 的煅烧温度下,仍保留了显著的高表面积120m2g-1,并且表面 Ce(4+)相对于 Ce(3+)离子的富集和相对较强的铕发射得到了测量,其寿命为~1.8ms,半峰全宽(FWHM)窄至 10cm-1。在激发到紫外和可见光光谱范围内,掺铕氧化铈纳米晶显示出跨越橙红色波长的可变发射。可调谐发射可以通过铕掺杂剂在氧化铈纳米晶内的不均匀分布以及铕离子从表面向氧化铈内部位的逐步扩散以及氧化铈主体对发射敏化的选择性参与来解释。还讨论了体掺杂和浸渍铕对氧化铈主体结构和光学性质的影响。

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