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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhanced Exciton-Phonon Coupling in Colloidal Type-11 CdTe-CdSe Heteronanocrystals
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Enhanced Exciton-Phonon Coupling in Colloidal Type-11 CdTe-CdSe Heteronanocrystals

机译:胶体11型CdTe-CdSe杂纳米晶体中的增强激子-声子偶联

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In this paper, the observation of LO-phonon progressions in the low temperature (4.2 K) photoluminescence excitation spectra of different types of colloidal NCs is reported. The strength of the exciton-LO-phonon coupling at 4.2 K, as reflected by the Huang-Rhys parameter S, increases from CdSe QDs (S = 0.8-1.0) to Type-I~(1/2) CdTe/CdSe HNCs (5 = 1.5), and from these to Type-II CdTe/CdSe HNCs (5 = 2.9). This trend is explained by the decrease in the electron-hole wave function overlap that accompanies the gradual increase in the CdSe volume fraction in the HNCs. The decrease in the electron-hole overlap increases the exciton polarization, which in turn enhances the exciton-LO-phonon coupling via the Frohlich interaction. The results provide novel insights into the nature of spatially indirect exciton transitions and show that compositional control of semiconductor heteronanocrystals can be used as a very effective tool to tailor the exciton-phonon coupling strength of nanoscale excitons.
机译:本文报道了在不同类型的胶态NCs的低温(4.2 K)光致发光激发光谱中观察到的LO声子级数。 Huang-Rhys参数S反映了在4.2 K时激子-LO-声子耦合的强度从CdSe QDs(S = 0.8-1.0)增加到I〜(1/2)CdTe / CdSe HNCs( 5 = 1.5),然后从这些到II型CdTe / CdSe HNC(5 = 2.9)。这种趋势可以通过HNC中CdSe体积分数逐渐增加所伴随的电子-空穴波函数重叠的减少来解释。电子-空穴重叠的减少增加了激子极化,这又通过Frohlich相互作用增强了激子-LO-声子耦合。结果为空间间接激子跃迁的性质提供了新颖的见解,并表明半导体杂纳米晶体的成分控制可以用作调整纳米级激子的激子-声子耦合强度的非常有效的工具。

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