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采用单源前驱体策略增强铕掺杂二氧化钛纳米颗粒的光致发光性能

Enhanced Photoluminescence of Europium-Doped TiO Nanoparticles Using a Single-Source Precursor Strategy.

作者信息

Mendez Violaine, Fabre Marlène, Cornier Thibaut, Bosselet Françoise, Loridant Stéphane, Asaad Sarah, Daniele Stéphane

机构信息

IRCELYON, CNRS, University Claude Bernard Lyon 1, UMR 5256, F-69100 Villeurbanne, France.

CP2M-ESCPE Lyon, CNRS, University Claude Bernard Lyon 1, UMR 5128, 43 Bd du 11 Nov. 1918, CEDEX, 69616 Villeurbanne, France.

出版信息

Molecules. 2024 Dec 10;29(24):5824. doi: 10.3390/molecules29245824.

Abstract

TiO:Eu nanoparticles with varying europium concentrations were successfully synthesized via a one-pot sol-gel approach using a molecular heterometallic single-source precursor (SSP) Eu-Ti. For comparison, nanomaterials with similar europium levels were also produced by impregnating europium salts onto the same TiO substrate. All the nanomaterials were thoroughly characterized using Eu elemental analysis, powder X-ray diffraction (XRD), scanning (SEM), transmission (TEM), scanning transmission electron microscopy (STEM), Brunauer-Emmett-Teller (BET) analysis, thermogravimetric analysis (TGA), X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, and photoluminescence (PL). This low-temperature synthesis yielded crystalline powders, and calcination at 400 °C was performed to remove surface organic impurities, enabling a precise comparison of the final nanomaterials. While both preparation methods produced materials with similarly dispersed and localized dopants on the TiO surface, photoluminescence studies revealed that the SSP-derived nanomaterials exhibited significantly superior electro-optical properties. This enhanced efficiency is attributed to the co-hydrolysis of both reactants, which facilitates an optimized interface between the crystalline TiO core and the dopant-rich amorphous surface, thereby enabling far more effective charge transfer than that achieved by impregnation.

摘要

通过使用分子杂金属单源前驱体(SSP)Eu-Ti,采用一锅法溶胶-凝胶法成功合成了具有不同铕浓度的TiO:Eu纳米颗粒。为了进行比较,还通过将铕盐浸渍到相同的TiO基底上来制备具有相似铕含量的纳米材料。使用Eu元素分析、粉末X射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、扫描透射电子显微镜(STEM)、布鲁诺尔-埃米特-泰勒(BET)分析、热重分析(TGA)、X射线光电子能谱(XPS)、拉曼光谱和光致发光(PL)对所有纳米材料进行了全面表征。这种低温合成产生了结晶粉末,并在400°C下进行煅烧以去除表面有机杂质,从而能够对最终的纳米材料进行精确比较。虽然两种制备方法都在TiO表面产生了具有相似分散和定位掺杂剂的材料,但光致发光研究表明,由SSP衍生的纳米材料表现出明显优越的电光性能。这种提高的效率归因于两种反应物的共水解,这有助于在结晶TiO核和富含掺杂剂的无定形表面之间形成优化的界面,从而实现比浸渍法更有效的电荷转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2da1/11678432/09fb31189bc2/molecules-29-05824-sch001.jpg

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