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Tuning of electronic properties in IV-VI colloidal nanostructures by alloy composition and architecture

机译:调优的电子属性IV-VI胶体通过合金成分和纳米结构体系结构

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摘要

Colloidal lead chalcogenide (IV-VI) quantum dots and rods are of widespread scientific and technological interest, owing to their size tunable energy band gap at the near-infrared optical regime. This article reviews the development and investigation of IV-VI derivatives, consisting of a core (dot or rod) coated with an epitaxial shell, when either the core or the shell (or both) has an alloy composition, so the entire structure has the chemical formula PbSe_xS_(1-x)/PbSe_yS_(1-y) (0 ≤ x(y) ≤ 1). The article describes synthesis procedures and an examination of the structures' chemical and temperature stability. The investigation of the optical properties revealed information about the quantum yield, radiative lifetime, emission's Stokes shift and electron-phonon interaction, on the variation of composition, core-to-shell division, temperature and environment. The study reflected the unique properties of core-shell heterostructures, offering fine electronic tuning (at a fixed size) by changing their architecture. The optical observations are supported by the electronic band structure theoretical model. The challenges related to potential applications of the colloidal lead chalcogenide quantum dots and rods are also briefly addressed in the article.
机译:胶体铅硫族化物(IV-VI)量子点和广泛的科学和棒技术的兴趣,由于它们的大小在近红外可调谐能量带隙光学政权。IV-VI的发展和调查衍生品,包括一个核心(点或杆)涂上一个外延层,当的核心或shell(或两者)的合金组成,所以整个结构化学分子式PbSe_xS_ (1 - x) / PbSe_yS_ (1 y)(0≤x (y)≤1)。本文描述了合成过程和考试的结构化学和温度稳定性。光学性质的调查显示信息的量子产率,辐射一生中,排放的斯托克斯位移和电子声子相互作用的变化组合、core-to-shell部门温度和环境。核壳异质结构的性质,提供好的电子调优(以固定大小)通过改变他们的架构。观察支持电子乐队结构理论模型。相关的潜在的应用胶体铅硫族化物量子点和棒在本文也简要提及。

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