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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Synthesis and Self-Assembly Behavior of Charged Au Nanocrystals in Aqueous Solution
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Synthesis and Self-Assembly Behavior of Charged Au Nanocrystals in Aqueous Solution

机译:水溶液中带电金纳米晶的合成及自组装行为

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摘要

A series of water-soluble Au nanocrystals with different core sizes coated by either negatively or positively charged ligands are synthesized. We find a ligand interexchange process takes place when positively and negatively charged nanocrystals are mixed together and heated, resulting in mixed charged zwitterionic nanocrystals. The ligand exchange process between nanocrystals is studied in detail by electrophoresis. Self-assembly properties of the monocharged and zwitterionic nanocrystals are studied subsequently. By using the solvent evaporation process only the zwitterionic and positively charged nanocrystals can pack into well-ordered fcc lattice films. Under the nonsolvent diffusion condition, only the zwitterionic nanocrystals can aggregate and form shaped supracrystals. Structural analysis shows that the interparticle distance of the shaped supracrystal made of zwitterionic nanocrystals is 1 nm larger than that of the film one. The different interparticle distance is ascribed to the different fabrication process. We consider that nanocrystals adopt the closest packing in the film supracrystal due to the destroyed electrical double layer during the drying process, while the electrostatic repulsion plays an important role in determining the interparticle distance in the shaped supracrystal.
机译:合成了具有不同核尺寸的一系列带负电或带正电配体的水溶性金纳米晶体。我们发现,当带正电和带负电的纳米晶体混合在一起并加热时,就会发生配体相互交换过程,从而导致带电的两性离子纳米晶体混合在一起。通过电泳详细研究了纳米晶体之间的配体交换过程。随后研究了单电荷和两性离子纳米晶体的自组装性能。通过使用溶剂蒸发过程,仅两性离子和带正电的纳米晶体可以堆积成排列良好的fcc晶格膜。在非溶剂扩散条件下,仅两性离子纳米晶体可以聚集并形成形状超晶体。结构分析表明,由两性离子纳米晶体制成的成形超晶体的粒子间距离比薄膜之一大1nm。不同的粒子间距离归因于不同的制造过程。我们认为,由于干燥过程中电双层的破坏,纳米晶体在薄膜超晶体中采用了最紧密的堆积,而静电排斥在决定超晶体中的颗粒间距离方面起着重要作用。

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