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Influence of Size and Shape Anisotropy on Optical Properties of CdSe Quantum Dots

机译:大小和形状各向异性对CDSE量子点光学性质的影响

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摘要

We used low-temperature reactions to synthesize different-sized CdSe quantum dots (QDs) capped with fatty-acid and phosphine ligands. From the correlation of high-resolution transmission electron microscopy and X-ray diffraction (XRD) analyses of the synthesized QDs, we observed size-dependent shape anisotropy. In addition, the recorded XRD patterns revealed mixed crystal facets with zinc blende and wurtzite structures in small-sized QDs. Furthermore, from differential absorption (DA) spectra, we extracted the electronic transition energies for different-sized QDs, which were found to be similar to the calculated values of the quantum size levels associated with band mixing of CdSe QDs with a moderate bandgap. We found that the excitonic absorption peaks are increasingly “hidden” with decreasing QD size because of the crystal structure and crystalline quality. The results show good agreement with the obtained diffraction patterns and the estimation errors obtained from the DA spectra.
机译:我们使用低温反应来合成用脂肪酸和膦配体的不同尺寸的CDSE量子点(QDS)。从合成QD的高分辨率透射电子显微镜和X射线衍射(XRD)分析的相关性,观察到尺寸依赖性各向异性。此外,记录的XRD图案揭示了用锌粘合剂的混合晶面和小尺寸QDS中的紫立岩结构。此外,根据差分吸收(DA)光谱,我们提取了用于不同尺寸的QD的电子转换能量,这被发现与与中等带隙的CDSE QD的带混合相关联的量子大小水平的计算值类似。我们发现,由于晶体结构和晶体质量,激发器吸收峰随着QD尺寸而越来越“隐藏”。结果表现出与所获得的衍射图案和从DA光谱获得的估计误差吻合良好。

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