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Universal Length Dependence of Rod-to-Seed Exciton Localization Efficiency in Type I and Quasi-Type II CdSe@CdS Nanorods

机译:I型和准II型CdSe @ CdS纳米棒中杆对种子激子定位效率的通用长度依赖性

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A critical step involved in many applications of one-dimensional seeded CdSe@CdS nanorods, such as luminescent solar concentrators, optical gains, and photocatalysis, is the localization of excitons from the light-harvesting CdS nanorod antenna into the light-emitting CdSe quantum dot seed. We report that the rod-to-seed exciton localization efficiency decreases with the rod length but is independent of band alignment between the CdSe seed and CdS rod. This universal dependence can be well modeled by the competition between exciton one-dimensional diffusion to the CdSe seed and trapping on the CdS rod. This finding provides a rational approach for optimizing these materials for their various device applications.
机译:一维种子CdSe @ CdS纳米棒的许多应用(例如发光太阳能集中器,光学增益和光催化)涉及的关键步骤是将激子从光捕获CdS纳米棒天线定位到发光CdSe量子点中种子。我们报告说,从杆到种子的激子定位效率随杆的长度而降低,但与CdSe种子和CdS杆之间的能带对准无关。激子一维扩散到CdSe种子与捕获在CdS棒上的竞争可以很好地模拟这种普遍依赖性。这一发现提供了一种合理的方法,可以针对各种设备应用优化这些材料。

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