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首页> 外文期刊>Semiconductors >On the Synthesis and Photoluminescence and Cathodoluminescence Properties of CdSe, CdTe, PbS, InSb, and GaAs Colloidal Quantum Dots
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On the Synthesis and Photoluminescence and Cathodoluminescence Properties of CdSe, CdTe, PbS, InSb, and GaAs Colloidal Quantum Dots

机译:CDSE,CDTE,PBS,INSB和GaAs胶体量子点的合成和光致发光和阴极发光性能

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摘要

Quantum dots of the group of wide-gap and narrow-gap semiconductors are synthesized and investigated under identical conditions, which makes it possible to perform the comparative analysis and modeling of the mechanisms of radiative recombination and luminescence, for which a stable exciton bond between the electron and hole has an important role. Exciton states are unstable for quantum dots without a shell and narrow-gap semiconductors, which leads to a substantial decrease in the probability of radiative recombination and, correspondingly, the quantum yield of luminescence. The experimental values of the spectral position of the luminescence maximum for quantum dots with clear manifestation of the exciton recombination mechanism noticeably shift to the long-wavelength region with respect to the calculated ones. In calculations and analysis, we use the effective electron mass for bulk semiconductors. The observed good correspondence of the calculated values of the maximum and spectral band with the experiment can mean that quantum dots have a long-range order crystalline structure similar to that one observed in single crystals and polycrystals.
机译:宽间隙和窄间隙半导体的量子点被合成并在相同的条件下研究,这使得可以进行辐射重组和发光机制的比较分析和建模,其中稳定的激子粘合电子和孔具有重要作用。由于没有壳和窄间隙半导体的量子点,激子状态对量子点不稳定,这导致辐射重组的可能性显着降低,相应地,发光的量子产率。对于量子点的发光最大值的光谱位置的实验值,具有透明表现的激子重组机构明显地相对于计算的偏移到长波长区域。在计算和分析中,我们使用散装半导体的有效电子质量。观察到与实验的最大和光谱带的计算值的良好对应关系意味着量子点具有类似于在单晶和多晶体中观察到的远程顺序结晶结构。

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