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首页> 外文期刊>Advanced Functional Materials >Encapsulation and Ostwald ripening of Au and Au-Cl complex nanostructures in silica shells
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Encapsulation and Ostwald ripening of Au and Au-Cl complex nanostructures in silica shells

机译:二氧化硅壳中Au和Au-Cl复合纳米结构的包封和Ostwald成熟

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We report a general template strategy for rational fabrication of a new class of nanostructured materials consisting of multicore shell particles. Our approach is demonstrated by encapsulating Au or Pt nanoparticles in silica shells. Other superstructures of these hollow shells, like dimers, trimers, and tetramers can also be formed by nanoparticle-mediated self-assembly. We have also used the as-prepared multicore Au-silica hollow particles to perform the first studies of Ostwald ripening in confined microspace, in which chloride was found to be an efficient mediating ligand. After treatment with aqua regia, Au-Cl complex is formed inside the shell, and is found to be very active under in situ transmission electron microscopy observations while confined in a microcell. This aspect of the work is expected to motivate further in situ studies of confined crystal growth.
机译:我们报告合理模板的新型纳米结构材料的多核壳粒子组成的合理的一般模板策略。我们的方法通过将Au或Pt纳米颗粒封装在二氧化硅壳中得到证明。这些空心壳的其他上部结构,如二聚体,三聚体和四聚体,也可以通过纳米粒子介导的自组装形成。我们还使用制备的多核金-二氧化硅空心颗粒对密闭空间中的奥斯特瓦尔德熟化进行了首次研究,在该研究中,氯化物是一种有效的介导配体。用王水处理后,Au-Cl络合物在壳内部形成,并且在原位透射电子显微镜观察下发现其非常活泼,同时被限制在微池中。这项工作的这一方面有望激发有限的晶体生长的进一步原位研究。

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