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Surface-specific overgrowth of platinum on shaped gold nanocrystals

机译:铂在特定形状的金纳米晶体上的表面特定过度生长

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摘要

Controlling the shape and composition of metal nanocrystals can be beneficial for tuning the optical or catalytic properties in a variety of applications. In this study, surface-specific overgrowth of platinum was found on shaped gold nanocrystals of cubes, octahedra and spheres. Platinum overgrowth was observed on the planar faces of gold cubes, while the overgrowth occurred at the vertices of gold octahedra, indicating that platinum was selectively reduced on the Au (100) surface for each gold nanocrystal shape. The platinum nuclei covered the entire surface for gold spheres, which don't have well-defined surfaces. As the Pt/Au ratio increased, a full platinum shell was formed. Solution-based UV-Vis absorption spectra of the composite nanocrystals showed that the absorption peak was red-shifted with increasing platinum coverage. The optical response of a single composite nanocrystal was measured by dark field microscope, which also demonstrated a red shift in the scattering spectrum with increasing platinum coverage. The extent of a red shift depended on the shape and composition of the composite nanocrystals.
机译:控制金属纳米晶体的形状和组成对于在各种应用中调节光学或催化性能可能是有益的。在这项研究中,在立方体,八面体和球形的形状金纳米晶体上发现了铂的表面特定过度生长。在金立方体的平面上观察到铂的过度生长,而在八面体的金的顶点上发生了过度生长,这表明对于每种金纳米晶体形状,铂在Au(100)表面上被选择性还原。铂核覆盖了金球的整个表面,而金球没有明确的表面。随着Pt / Au比的增加,形成了完整的铂壳。复合纳米晶体的基于溶液的UV-Vis吸收光谱表明,吸收峰随铂覆盖率的增加而红移。通过暗场显微镜测量单个复合纳米晶体的光学响应,这也证明了散射光谱随铂覆盖率的增加而发生红移。红移的程度取决于复合纳米晶体的形状和组成。

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