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Crafting Core/Graded Shell-Shell Quantum Dots with Suppressed Re-absorption and Tunable Stokes Shift as High Optical Gain Materials

机译:制作具有抑制的重吸收和可调整的斯托克斯位移的纤芯/渐变壳-壳量子点作为高光学增益材料

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摘要

The key to utilizing quantum dots (QDs) as lasing media is to effectively reduce non-radiative processes, such as Auger recombination and surface trapping. A robust strategy to craft a set of CdSe/Cd1-xZnxSe1-ySy/ZnS core/graded shell-shell QDs with suppressed re-absorption, reduced Auger recombination rate, and tunable Stokes shift is presented. In sharp contrast to conventional CdSe/ZnS QDs, which have a large energy level mismatch between CdSe and ZnS and thus show strong re-absorption and a constrained Stokes shift, the as-synthesized CdSe/Cd1-xZnxSe1-ySy/ZnS QDs exhibited the suppressed re-absorption of CdSe core and tunable Stokes shift as a direct consequence of the delocalization of the electron wavefunction over the entire QD. Such Stokes shift-engineered QDs with suppressed re-absorption may represent an important class of building blocks for use in lasers, light emitting diodes, solar concentrators, and parity-time symmetry materials and devices.
机译:利用量子点(QD)作为激光介质的关键是有效减少非辐射过程,例如俄歇复合和表面俘获。提出了一种鲁棒的策略来制备一组CdSe / Cd1-xZnxSe1-ySy / ZnS核/渐变壳-壳QD,具有抑制的重吸收,降低的俄歇复合率和可调的斯托克斯位移。与常规CdSe / ZnS QD形成鲜明对比的是,常规CdSe / ZnS QD在CdSe和ZnS之间具有很大的能级失配,因此显示出强烈的重吸收和受限的斯托克斯位移,合成后的CdSe / Cd1-xZnxSe1-ySy / ZnS QD显示出抑制了CdSe核的重吸收和可调节的斯托克斯位移,这是电子波函数在整个QD上的离域的直接结果。这种具有抑制的重吸收的斯托克斯频移工程QD可能代表了重要的一类构建基块,可用于激光器,发光二极管,太阳能聚光器以及奇偶时间对称材料和设备。

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