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Dilution effects on the photoluminescence of ZnSe quantum-dot dispersions

机译:稀释对ZnSe量子点分散体光致发光的影响

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We report results for the photoluminescence emission intensity from ZnSe quantum-dot dispersions in liquids as a function of particle concentration. The observed emission intensity initially increases with dilution, exhibits a maximum, and then decreases. The optimal particle concentration yielding the maximum emission intensity increases as the particle size decreases. The corresponding optimal interparticle distance was estimated for three quantum-dot populations having different average particle size. The observed behavior depends on fundamental physical interactions between the exciting and emitted radiation and the quantum dots; it is expected to be valid for any quantum-dot dispersion, irrespective of material type.
机译:我们报告了液体中ZnSe量子点分散体的光致发光发射强度与颗粒浓度的关系。观察到的发射强度最初随着稀释而增加,呈现最大值,然后降低。产生最大发射强度的最佳颗粒浓度随颗粒尺寸的减小而增加。对于具有不同平均粒度的三个量子点群体,估计了相应的最佳粒子间距离。观察到的行为取决于激发辐射和发射辐射与量子点之间的基本物理相互作用。预期对于任何量子点色散都是有效的,而与材料类型无关。

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