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Facet-controlled facilitation of PbS nanoarchitectures by understanding nanocrystal growth

机译:Facet-controlled PbS的便利nanoarchitectures通过理解纳米晶体增长

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摘要

Nanostructured lead sulphide is a significant component in a number of energy-related sustainable applications such as photovoltaic cells and thermoelectric components. In many micro-packaging processes, dimensionality-controlled nano-architectures as building blocks with unique properties are required. This study investigates different facet-merging growth behaviors through a wet-chemical synthetic strategy to produce high-quality controlled nanostructures of lead sulphide in various dimensionalities. It was found that 1D nanowires or 2D nanosheets can be obtained by the merging of reactive {111}- or {110}-facets, respectively, while promoting {100} facets in the early stages after nucleation leads to the growth of 0D nanocubes. The influence of temperature, capping ligands and co-solvent in facilitating the crystal facet growth of each intermediate seed is also demonstrated. The novelty of this work is characterized by the delicate manipulation of various PbS nanoarchitectures based on the comprehension of the facet-merging evolution. The synthesis of facet-controlled PbS nanostructures could provide novel building blocks with desired properties for use in many applications.
机译:纳米硫化铅是重要的能源相关的组件可持续发展的应用,如光伏细胞和热电组件。micro-packaging流程,dimensionality-controlled nano-architectures作为构建块具有独特的属性必需的。通过facet-merging增长行为湿化学合成生产策略高质量的纳米结构的控制硫化物在不同的维度。发现1 d纳米线或2 d nanosheets通过活性{111}或合并{110}面分别同时促进{100}方面在成核后的早期阶段0 d nanocubes的增长。温度、限制配体和co-solvent促进晶体方面的增长中间的种子也证明。新奇的工作特点是精致的操纵各种PbSnanoarchitectures理解的基础上facet-merging演化。facet-controlled PbS纳米结构可以提供小说构建块所需的属性在许多应用程序中使用。

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