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首页> 外文期刊>ACS nano >Probing the Wave Function Delocalization in CdSe/CdS Dot-in-Rod Nanocrystals by Time- and Temperature-Resolved Spectroscopy
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Probing the Wave Function Delocalization in CdSe/CdS Dot-in-Rod Nanocrystals by Time- and Temperature-Resolved Spectroscopy

机译:通过时间和温度分辨光谱探测CdSe / CdS棒内点状纳米晶体的波函数离域

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摘要

Colloidal semiconductor quantum structures allow controlling the strong confinement of charge carriers through material composition and geometry. Besides being a unique platform to study fundamental effects, these materials attracted considerable interest due to their potential in opto-electronic and quantum communication applications. Heteronanostructures like CdSe/CdS offer new prospects to tailor their optical properties as they take advantage of a small conduction band offset allowing tunability of the electron delocalization from type-I toward quasi-type-II. Here, we report on a detailed study of the exciton recombination dynamics in CdSe/CdS heterorods. We observed a clear size-dependent radiative lifetime, which can be linked to the different degree of electron wave function (de)localization. Moreover, by increasing the temperature from 70 to 300 K, we observed a considerable increase of the radiative lifetime, clearly demonstrating a reduction of the conduction band offset at higher temperatures. Understanding and controlling electron delocalization In such heterostructures will be pivotal for realizing efficient and low-cost photonic devices.
机译:胶体半导体量子结构允许通过材料组成和几何形状来控制电荷载流子的强约束。这些材料不仅是研究基本效应的独特平台,而且由于其在光电和量子通信应用中的潜力而引起了极大的兴趣。像CdSe / CdS之类的异质结构由于具有小的导带偏移特性而允许调整电子从I型向准II型离域的可调节性,从而为调整其光学性能提供了新的前景。在这里,我们报告在CdSe / CdS异质棒中的激子复合动力学的详细研究。我们观察到了清晰的尺寸依赖性辐射寿命,该辐射寿命可以与不同程度的电子波函数(去定位)有关。此外,通过将温度从70 K升高到300 K,我们观察到了辐射寿命的显着增加,这显然证明了在较高温度下导带偏移的减小。了解和控制电子离域在此类异质结构中,对于实现高效,低成本的光子器件至关重要。

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