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首页> 外文期刊>Frontiers in Chemistry >Colloidal Synthesis of Bulk-Bandgap Lead Selenide Nanocrystals
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Colloidal Synthesis of Bulk-Bandgap Lead Selenide Nanocrystals

机译:禁带型硒化铅纳米晶的胶体合成

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摘要

Lead selenide quantum dots (QDs) are low-bandgap IV-VI semiconducting nanomaterials that have been studied for a variety of applications. Their preparation using colloidal methods can produce small spherical to larger cubic nanocrystals, with an upper limit of ~17 nm reported to date. Here we describe methods for preparing cubic PbSe nanocrystals over a 20→40 nm size range using a twostep procedure. Specifically, ~10 nm PbSe QDs are generated using the rapid injection method, the products from which are overcoated with additional lead and selenium precursors. The use of two lead reagents were studied; lead oleate resulted in a maximum of 20 nm cubes, while more reactive lead hexyldecanoate resulted in much larger nanomaterials with bulk bandgaps. However, PbSe samples prepared with lead hexyldecanoate also contained agglomerates. Special care must be taken when characterizing larger strained nanomaterials with X-ray powder diffraction, for which the Scherrer equation is inadequate. A more rigorous approach using the Williamson-Hall method provides characterizations that are consistent with electron microscopy analysis.
机译:硒化铅量子点(QDs)是低带隙IV-VI半导体纳米材料,已针对各种应用进行了研究。使用胶体方法制备它们可以产生小的球形到较大的立方纳米晶体,迄今为止报道的上限为〜17 nm。在这里,我们描述了使用两步程序在20→40 nm尺寸范围内制备立方PbSe纳米晶体的方法。具体而言,使用快速注入方法可生成约10 nm的PbSe QD,并在其产品上覆盖额外的铅和硒前体。研究了两种铅试剂的使用;油酸铅最多可产生20 nm的立方体,而反应性更高的己基癸酸铅可产生更大的具有带隙的纳米材料。但是,用癸基己酸铅制备的PbSe样品也含有附聚物。用X射线粉末衍射表征较大的应变纳米材料时必须格外小心,而对于这些材料,Scherrer方程是不够的。使用Williamson-Hall方法的更严格方法提供的特征与电子显微镜分析一致。

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