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Facile synthesis of Cu and Cu@Cu-Ni nanocubes and nanowires in hydrophobic solution in the presence of nickel and chloride ionst

机译:Facile synthesis of Cu, and Cu@Cu-Ni nanocubes, and纳米线在疏水的解决方案氯化镍和ionst

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摘要

A highly shape selective synthesis of Cu and Cu@Cu-Ni nanocubes and nanowires has been developed by modulating the coordination chemistry of transition metal ions with a trioctylphosphine (TOP)-Cr ligand pair in oleylamine under mild organic solvent conditions. The as-prepared nanocubes have a face-centered cubic (fcc) phase and are covered by six {100} facets, whereas the as-prepared nanowires have a multi-twinned structure and grow along the [110] direction. Both the Ni~(2+) and Cl~- ions, along with TOP, play vital roles in determining the final morphology of the as-prepared nanocrystals (NCs). TOP can be used to selectively generate single-crystal seeds at the initial stage, which then grow into nanocubes in the presence of Cl~ ions, while the absence of TOP leads to the formation of multi-twined crystal seeds that finally develop into nanowires. Moreover, Ni can be incorporated to form a Cu-Ni alloy shell over a Cu core at higher temperatures in a one-pot process, which makes diamagnetic Cu NCs magnetically responsive and has a significant influence on their optical properties.
机译:一个高度选择性合成铜和形状Cu@Cu-Ni nanocubes和纳米线由调制的协调化学的过渡金属离子三辛基(上)cr配体对在温和的有机溶剂条件下油酰胺。的好nanocubes面心立方(fcc)阶段,由六个{100}方面,而和纳米线有一个multi-twinned结构沿[110]和成长方向。前,在确定中起到至关重要的作用最后和纳米晶体的形态(nc)。单晶在初始阶段,种子然后长成nanocubes Cl ~离子,而缺乏导致multi-twined水晶种子的形成最后发展成纳米线。被整合形成一个Cu-Ni合金外壳铜核心温度升高时在一个锅过程,使抗磁性铜nc磁响应性,意义重大对其光学性质的影响。

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