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Shape control of CdSe nanocrystals

机译:CdSe纳米晶体的形状控制

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Nanometre-size inorganic dots, tubes and wires exhibit a wide range of electrical and optical properties that depend sensitively on both size and shape, and are of both fundamental and technological interest. In contrast to the syntheses of zero-dimensional systems, existing preparations of one-dimensional systems often yield networks of tubes or rods which are difficult to separate. And, in the case of optically active Ⅱ-Ⅵ and Ⅲ-Ⅴ semiconductors, the resulting rod diameters are too large to exhibit quantum confinement effects. Thus, except for some metal nanocrystals, there are no methods of preparation that yield soluble and monodisperse particles that are quantum-confined in two of their dimensions. For semiconductors, a benchmark preparation is the growth of nearly spherical Ⅱ-Ⅵ and Ⅲ-Ⅴ nanocrystals by injection of precursor molecules into a hot surfactant. Here we demonstrate that control of the growth kinetics of the Ⅱ-Ⅵ semiconductor cadmium selenide can be used to vary the shapes of the resulting particles from a nearly spherical morphology to a rod-like one, with aspect ratios as large as ten to one. This method should be useful, not only for testing theories of quantum confinement, but also for obtaining particles with spectroscopic properties that could prove advantageous in biological labelling experiments and as chromophores in light-emitting diodes.
机译:纳米级的无机点,管和线表现出广泛的电学和光学特性,这些特性敏感地取决于大小和形状,并且具有基本的技术意义。与零维系统的合成相反,一维系统的现有准备工作通常会产生难以分离的管或棒网络。而且,对于光学活性的Ⅱ-Ⅵ和Ⅲ-Ⅴ半导体,所得的棒直径太大而不能表现出量子约束效应。因此,除了一些金属纳米晶体之外,没有制备方法可产生在其两个维度上量子受限的可溶和单分散颗粒。对于半导体,一个基准准备工作是通过将前体分子注入热表面活性剂中来生长近球形的Ⅱ-Ⅵ和Ⅲ-Ⅴ纳米晶体。在此我们证明,控制Ⅱ-Ⅵ族半导体硒化镉的生长动力学可用于将所得颗粒的形状从近乎球形变为棒状,长径比为十比一。该方法不仅对测试量子限制理论有用,而且对于获得具有光谱性质的粒子都应是有用的,这些粒子在生物标记实验中和发光二极管中的发色团方面都被证明是有利的。

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