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Solar Synthesis of PbS-SnS2 Superstructure Nanoparticles

机译:PbS-SnS2超结构纳米粒子的太阳合成

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We report the synthesis and supporting density-functional-theory computations for a closed-cage, misfit layered-compound superstructure from PbS-SnS2, generated by highly concentrated sunlight from a precursor mixture of Pb, SnS2, and graphite. The unique reactor conditions created in our solar furnace are found to be particularly conducive to the formation of these nanomaterials. Detailed structural and chemical characterization revealed a spontaneous inside-out formation mechanism, with a broad range of nonhollow fullerene-like structures starting at a diameter of similar to 20 am and a wall thickness of similar to 5 layers. The computations also reveal a counterintuitive charge transfer pathway from the SnS2 layers to the PbS layers, which indicates that, in contrast to binary-layered compounds where it is principally van der Waals forces that hold the layers together, polar forces appear to be as important in stabilizing superstructures of misfit layered compounds.
机译:我们报告了由高浓度的Pb,SnS2和石墨的前体混合物产生的PbS-SnS2的闭笼,错配层状化合物上部结构的合成和支持的密度泛函理论计算。发现在我们的太阳能炉中产生的独特反应器条件特别有利于这些纳米材料的形成。详细的结构和化学特征揭示了自发的由内而外的形成机理,具有范围广泛的非空心富勒烯状结构,其起始直径相似于20 am,壁厚相似于5层。计算还揭示了从SnS2层到PbS层的反直觉电荷转移路径,这表明,与主要由范德华力将各层保持在一起的二元层化合物相反,极性力似乎同样重要稳定错配的层状化合物的上部结构。

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