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Investigation of electronic and optical properties of (CdSe/ZnS/CdSe/ZnS) quantum dot–quantum well heteronanocrystal

机译:(CdSe / ZnS / CdSe / ZnS)量子点-量子阱杂纳米晶体的电子和光学性质研究

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In this article, we have investigated the photoluminescence intensity of quantum dot–quantum well heteronanocrystal with non-linear potential profile which has been analyzed by the finite element numerical methods and is compared with traditional potential profile of same heteronanocrystal. We have probed the effect of carrier localization in layers of heteronanocrystal on the photoluminescence intensity. Moreover, the effects of variation of radius layers such as CdSe core, shell, and ZnS barriers radius on the photoluminescence intensity are studied. Besides, for the first time, we demonstrated the shift of quantum dot–quantum well operation wavelength by introducing non-linear potential profile in the core of heteronanocrystal that can be drastically affected on biological application. Furthermore, in biological application, by tuning the emission wavelengths of quantum dot into the far-red and near-infrared ranges, the non-invasive in vivo imaging technique was developed. In this wavelength window, tissue absorption, scattering, and auto-fluorescence intensities have minimum quantities. In our article with new structure, the relation between size and operation wavelength don’t follow traditional relation.
机译:在本文中,我们研究了具有非线性电势分布的量子点-量子阱异质纳米晶体的光致发光强度,已通过有限元数值方法对其进行了分析,并将其与相同异质纳米晶体的传统电势分布进行了比较。我们已经探究了杂化纳米晶体层中载流子定位对光致发光强度的影响。此外,研究了CdSe核,壳层和ZnS势垒半径等半径层的变化对光致发光强度的影响。此外,我们首次通过在异质纳米晶体的核中引入非线性电势分布图来证明量子点-量子阱操作波长的移动,该非线性电势分布可能会严重影响生物学应用。此外,在生物应用中,通过将量子点的发射波长调节到远红外和近红外范围,开发了无创体内成像技术。在此波长窗口中,组织吸收,散射和自发荧光强度的数量最少。在我们的新结构文章中,尺寸和工作波长之间的关系不遵循传统关系。

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