首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Ultrafast Photoluminescence from the Core and the Shell in CdSe/CdS Dot-in-Rod Heterostructures
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Ultrafast Photoluminescence from the Core and the Shell in CdSe/CdS Dot-in-Rod Heterostructures

机译:CdSe / CdS点内异质结构中核和壳的超快光致发光

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摘要

With an ultrafast time-resolved photoluminescence system utilizing a Kerr gate, the time-resolved photoluminescence of core and shell constituents within CdSe/CdS dot-in-rod heterostructures is studied as a function of heterostructure size. Measurements performed at low excitation fluence generating, on average, less than one exciton per nanorod, reveal photoluminescence from direct recombination of carriers in the CdS heterostructure rod with lifetime generally increasing from 0.4ps to 1.3ps as the rod length increases. Decay of the CdS rod photoluminescence is accompanied by an increase in emission from the CdSe core on comparable time scales, also trending towards larger values as the rod length increases. The observed kinetics can be explained without invoking a non-radiative trapping mechanism. We also present alloying as a mechanism for enhancing electron confinement and reducing fluorescence lifetime at nanosecond time scales.
机译:利用Kerr门的超快速时间分辨光致发光系统,研究了CdSe / CdS杆内点状异质结构中核和壳成分的时间分辨光致发光与异质结构尺寸的关系。在低激发通量下每纳米棒平均产生少于一个激子的测量表明,CdS异质结构棒中载流子直接重组产生的光致发光,随着棒长度的增加,寿命通常从0.4ps增加到1.3ps。 CdS棒光致发光的衰减伴随着可比的时间尺度上CdSe核心发射的增加,并且随着棒长度的增加也趋向于更大的值。无需调用非辐射捕获机制就可以解释所观察到的动力学。我们还提出了合金化作为在纳秒级时标增强电子约束并减少荧光寿命的机制。

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