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Synthesis and optical properties of colloidal core-shell semiconductor nanocrystals quantum dots for sensory application

机译:胶体核壳半导体纳米晶体量子点的合成及其光学性能

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We present results on the synthesis of core-shell CdSe/ZnS semiconductor nanocrystal quantum dots (NQDs) and their optical enhancement properties. A very strong and narrow photoluminescence is observed for sizes varying from 2 to 5 nm. Using an effective mass theory, we model the energy shift for the first excited state for core and core/shell NQDs. Core/shell heterostructure can be used to significantly increase the absorption cross section and decrease the efficiency of Auger recombination. Opal structures prepared from silica beads are also reported. This photonic crystal infiltrated with NQDs shows promise in biological detection.
机译:我们目前关于核壳CdSe / ZnS半导体纳米晶体量子点(NQDs)的合成及其光学增强性能的结果。对于2至5nm的尺寸,观察到非常强且狭窄的光致发光。使用有效质量理论,我们为核和核/壳NQD的第一激发态的能量转移建模。核/壳异质结构可用于显着增加吸收截面并降低俄歇复合的效率。还报道了由二氧化硅珠制备的蛋白石结构。这种被NQD渗透的光子晶体在生物检测中显示出了希望。

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