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首页> 外文期刊>Journal of physical chemistry letters >Optical and Electronic Properties of Nonconcentric PbSe/CdSe Colloidal Quantum Dots
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Optical and Electronic Properties of Nonconcentric PbSe/CdSe Colloidal Quantum Dots

机译:非同心PbSe / CdSe胶体量子点的光学和电子性质

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Lead chalcogenide colloidal quantum dots are attractive candidates for applications operating in the near infrared spectral range. However, their function is forestalled by limited stability under ambient conditions. Prolonged temperature-activated cation-exchange of Cd2+ for Pb2+ forms PbSe/CdSe core/shell heterostructures, unveiling a promising surface passivation route and a method to modify the dots' electronic properties. Here, we follow early stages of an-exchange process, using spectroscopic and structural characterization tools, as well as numerical calculations. We illustrate that preliminary-exchange stages involve the formation of nonconcentric heterostructures, presumably due to a facet selective reaction, showing a pronounced change in the optical properties upon the increase of the degree of nonconcentricity or/and plausible creation of core/shell interfacial alloying. However, progressive-exchange stages lead to rearrangement of the shell segment into uniform coverage, providing tolerance to oxygen exposure with a spectral steadiness already on the formation of a monolayer shell.
机译:硫族化物铅胶体量子点是在近红外光谱范围内运行的应用的有吸引力的候选者。然而,它们的功能由于在环境条件下有限的稳定性而无法发挥作用。 Cd2 +对Pb2 +的长时间温度活化阳离子交换形成PbSe / CdSe核/壳异质结构,揭示了一种有前途的表面钝化途径以及改变点的电子性质的方法。在这里,我们使用光谱和结构表征工具以及数值计算来追踪交换过程的早期阶段。我们举例说明,初步交换阶段涉及非同心异质结构的形成,大概是由于刻面选择性反应,随着非同心度的增加或/和核/壳界面合金化的合理产生,光学性能发生了显着变化。但是,逐步交换阶段导致壳段重新排列成均匀的覆盖范围,从而在单层壳形成时就具有光谱稳定性,从而提供了对氧暴露的耐受性。

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