首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The effects of dopant concentration and excitation intensity on the upconversion and downconversion emission processes of beta-NaYF4:Yb3+,Er3+ nanoparticles
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The effects of dopant concentration and excitation intensity on the upconversion and downconversion emission processes of beta-NaYF4:Yb3+,Er3+ nanoparticles

机译:掺杂剂浓度和激发强度对β-NayF4:YB3 +,ER3 +纳米粒子的上变化和下变频发射过程的影响

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The dopant concentration of lanthanide ions in photon upconversion nanoparticles (UCNPs) remains one of the key points to boost the brightness of these nanomaterials and, therefore, their application developments. Here, we analyzed the effect of Er3+ and Yb3+ dopant concentrations of beta-NaYF4:Yb3+,Er3+ nanoparticles on the visible upconversion and near-infrared downconversion luminescence intensities. Our approach carefully excluded all other factors whose variation affects luminescence properties such as the size, morphology, crystal structure, ion distribution, ligand, and surrounding medium, allowing us to exactly infer the influence of the ratio of Yb3+ to Er3+ ions on the nanoparticle luminescence. To maintain the size and morphological properties of nanoparticles, we used a total dopant concentration of 22% while varying the ratio of Yb3+ to Er3+ ions from 0 to 10. A huge increase in luminescence takes place as the Yb/Er ratio increases following a power-law behavior, and this luminescence enhancement is greater at low excitation intensities. Above a Yb/Er ratio of around two, saturation occurs with a slight peak when this ratio is around four. Simulations using a rate equation model showed that upconversion luminescence (UCL) is mainly produced by the energy transfer between neighboring Er3+ ions at low Yb/Er ratios, while at high ratios, the energy transfer from Yb3+ to Er3+ ions dominates. However, downconversion luminescence (DCL) is produced at all analyzed ratios, except 0, by the previous mechanism.
机译:光子上转换纳米颗粒(UCNP)中稀土离子的掺杂浓度一直是提高纳米材料亮度的关键因素之一,因此也是纳米材料应用发展的关键。在这里,我们分析了β-NaYF4:Yb3+,Er3+纳米颗粒的Er3+和Yb3+掺杂浓度对可见光上转换和近红外下转换发光强度的影响。我们的方法小心地排除了所有其他影响发光性质的因素,如尺寸、形态、晶体结构、离子分布、配体和周围介质,使我们能够准确地推断Yb3+与Er3+离子的比例对纳米粒子发光的影响。为了保持纳米颗粒的尺寸和形态特性,我们使用了22%的总掺杂浓度,同时将Yb3+与Er3+离子的比例从0变为10。随着Yb/Er比值的增加,发光强度会出现大幅增加,并且这种发光增强在低激发强度下更大。当Yb/Er比值约为2时,饱和会在该比值约为4时出现一个轻微的峰值。利用速率方程模型进行的模拟表明,上转换发光(UCL)主要是在低Yb/Er比时由相邻Er3+离子之间的能量转移产生的,而在高Yb/Er比时,从Yb3+到Er3+离子的能量转移占主导地位。然而,根据之前的机制,下转换发光(DCL)在除0以外的所有分析比率下都会产生。

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