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由表面相互作用驱动的几何定制独立外延钯、金钯和金纳米板

Geometry-tailored freestanding epitaxial Pd, AuPd, and Au nanoplates driven by surface interactions.

作者信息

Yoo Youngdong, Kim Si-In, Kim Jihwan, Kim Bongsoo

机构信息

Department of Chemistry, Ajou University, 206 Worldcup-ro, Yeongtong-gu, Suwon 16499, Korea.

Department of Chemistry, KAIST, 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Korea.

出版信息

Nanoscale. 2020 Mar 19;12(11):6537-6544. doi: 10.1039/c9nr10557c.

DOI:10.1039/c9nr10557c
PMID:32159186
Abstract

Freestanding epitaxial metal nanoplates can be utilized as advanced three-dimensional platforms for various novel applications. Here we report the vapor-phase epitaxial growth of freestanding Pd, AuPd, and Au nanoplates on an a-cut sapphire substrate as well as the comprehensive study of their growth mechanisms and geometry tailoring. All as-grown Pd, AuPd, and Au nanoplates possess twin-free single crystallinity as well as are aligned three-dimensionally on the substrate with the same orientation. Interestingly, depending on their composition, they have the following three distinct geometries: trapezoid (Pd), hexagon (AuPd), or rhombus (Au). By analyzing the correlation of the geometry and orientation of the as-synthesized nanostructures, we reveal that all the nanoplates grow from square pyramidal seed crystals. The interfacial lattice mismatch between the bottom plane of the square pyramidal seeds and a-cut sapphire substrate increases in the following order: Pd < AuPd < Au. Consequently, the length of the interface between the bottom of the nanoplate and the substrate decreases in the following order: Pd > AuPd > Au; this leads to the resulting geometries of the synthesized nanoplates. Such a fundamental understanding of the growth mechanism would aid the growth of epitaxial metal nanostructures with the desired geometry, which is very attractive for building macroscale functional nanoarchitectures.

摘要

独立外延金属纳米板可作为先进的三维平台用于各种新颖应用。在此,我们报道了在a面蓝宝石衬底上独立外延生长钯、金钯和金纳米板,以及对其生长机制和几何形状调控的全面研究。所有生长的钯、金钯和金纳米板均具有无孪晶的单晶性,并且在衬底上三维取向相同。有趣的是,根据其组成,它们具有以下三种不同的几何形状:梯形(钯)、六边形(金钯)或菱形(金)。通过分析合成纳米结构的几何形状和取向之间的相关性,我们发现所有纳米板均由方形金字塔形籽晶生长而来。方形金字塔形籽晶底面与a面蓝宝石衬底之间的界面晶格失配按以下顺序增加:钯<金钯<金。因此,纳米板底部与衬底之间的界面长度按以下顺序减小:钯>金钯>金;这导致了合成纳米板的最终几何形状。对生长机制的这种基本理解将有助于生长具有所需几何形状的外延金属纳米结构,这对于构建宏观功能纳米结构非常有吸引力。

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