首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Polydimethylsiloxane composites containing core-only lanthanide-doped oleylamine-stabilized LaF3 nanoparticles with high emission lifetimes
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Polydimethylsiloxane composites containing core-only lanthanide-doped oleylamine-stabilized LaF3 nanoparticles with high emission lifetimes

机译:包含仅核掺杂镧系元素的油胺稳定的LaF3纳米粒子的聚二甲基硅氧烷复合物,具有高发射寿命

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This work reports on the synthesis and spectroscopic characterization of oleylamine-stabilized lanthanide-doped LaF3 nanoparticles isolated or dispersed in polydimethylsiloxane (pdms). The hexagonal Eu(III)-doped LaF3 nanoparticles have the mean size of 6 nm and are stabilized by oleylamine molecules, allowing their dispersion in pdms. Surface effects modify the emission properties of the Eu(III)-doped LaF3 isolated nanoparticles implying different emission profiles. Isolated nanoparticles show higher Judd-Ofelt emission intensity parameter values than the bulk ones. Time-resolved luminescence spectroscopy and lifetime measurements indicate the presence of at least two different chemical environments for Eu(III) ions, one being at the nanoparticle surface and the other at the bulk. The upconversion emission mechanism of Er(III)/Yb(III) co-doped LaF3 nanoparticles is dependent on the relative amount of Er(III)/Yb(III) in the sample and it may be explained by 2.5 photons, instead of the traditional mechanism involving 2 photons. Oleylamine surface passivation of Eu(III)-doped LaF3 nanoparticles dispersed in pdms avoids the influence of the siloxane polymer on the luminescence properties, keeping their emission spectral profile unchanged. Er(III)/Yb(III) co-doped LaF3 nanoparticles exhibit the Er(III) 1540 nm emission with FWHM = 75 nm for isolated or pdms-dispersed nanoparticles, which may allow the application of such materials in polymer based erbium-doped planar waveguides. The modified methodology of synthesis allows obtaining lanthanide-doped LaF3 nanoparticles with high emission lifetimes with no need for the shell protecting core approach.
机译:这项工作报告了分离或分散在聚二甲基硅氧烷(pdms)中的油胺稳定的镧系元素掺杂的LaF3纳米颗粒的合成和光谱表征。六方掺Eu(III)的LaF3纳米粒子的平均大小为6 nm,并通过油胺分子稳定,从而使其分散在pdms中。表面效应改变了掺有Eu(III)的LaF3分离的纳米颗粒的发射特性,暗示了不同的发射曲线。分离的纳米粒子显示出比整体粒子更高的Judd-Ofelt发射强度参数值。时间分辨发光光谱法和寿命测量表明,存在至少两种不同的Eu(III)离子化学环境,一种在纳米粒子表面,另一种在主体。 Er(III)/ Yb(III)共掺杂的LaF3纳米粒子的上转换发射机理取决于样品中Er(III)/ Yb(III)的相对量,并且可以用2.5个光子代替传统机制涉及2个光子。分散在pdms中的Eu(III)掺杂的LaF3纳米颗粒的油酰胺表面钝化避免了硅氧烷聚合物对发光性能的影响,使它们的发射光谱轮廓保持不变。 Er(III)/ Yb(III)共掺杂的LaF3纳米粒子对离析或pdms分散的纳米粒子表现出1540 nm的Er(III)1540 nm发射,FWHM = 75 nm,这可能允许将此类材料应用于聚合物基掺平面波导。修改后的合成方法可实现具有高发射寿命的镧系元素掺杂的LaF3纳米粒子,而无需使用壳保护核方法。

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