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On the Absorption Cross Section of CdSe Nanocrystal Quantum Dots

机译:CdSe纳米晶量子点的吸收截面

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摘要

The linear absorption cross section is a crucial parameter to the design of nanocrystal quantum dot devices and to the interpretation of spectroscopic data. We measure and report the size-dependent absorption cross section of CdSe nanocrystal quantum dots. We compare the results for absorption far above the band edge, where the quantum dot density of states may be approximated as a continuum, to simple theoretical models of light scattering from light-absorbing small particles. Excellent agreement with theory is found for dilute dispersions in hexane. We find that for absorption at 350 nm the per particle absorption cross section C_(abs) (in cm~2) for CdSe is C_(abs) = (5.501 * 10~5)a~3 cm~(-1), where a is the particle radius in cm. The absorption cross section is observed to be largely insensitive to the solvent refractive index. Detailed modeling of the effect of the ligand shell may be necessary to understand the lack of sensitivity of the absorption properties of nanocrystal quantum dots to the refractive index of the medium.
机译:线性吸收截面是纳米晶体量子点器件设计和光谱数据解释的关键参数。我们测量并报告了CdSe纳米晶体量子点的尺寸依赖性吸收截面。我们将吸收的结果与简单的理论模型(从吸收光的小颗粒进行的光散射)进行比较,该谱带的边缘处的吸收远高于带的边缘(在该处,状态的量子点密度可能近似为连续谱)。对于己烷中的稀分散液,发现与理论极好的一致性。我们发现,对于在350 nm处的吸收,CdSe的每粒子吸收截面C_(abs)(cm〜2)为C_(abs)=(5.501 * 10〜5)a〜3 cm〜(-1),其中a是以厘米为单位的粒子半径。观察到吸收截面对溶剂折射率非常不敏感。为了理解纳米晶体量子点的吸收特性对介质的折射率缺乏敏感性,可能需要对配体壳的作用进行详细的建模。

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