首页> 外文期刊>Chemistry: A European journal >Highly shape-selective synthesis of monodispersed fivefold twinned platinum nanodecahedrons and nanoicosahedrons
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Highly shape-selective synthesis of monodispersed fivefold twinned platinum nanodecahedrons and nanoicosahedrons

机译:单分散五倍孪晶铂纳米十面体和纳米二十面体的高度择形合成

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摘要

A general and facile solid liquid interface mediated reduction route towards highly shape-selective synthesis of monodispersed Pt nanodecahedrons(NDs) and nano-icosahedrons(NI) was demonstrated. The Pt NIs with a size of 12.6 nm and selectivity of 88% were bounded with twenty(111) facets. By altering the added amount of MGS from 1 to 10 mg, the optimum selectivity value is obtained at 5 mg. During prolonged growth, thermodynamically favored Pt NDs or NIs were yielded due to either the induction of residual Pt ions or the drive of total energy minimization. The formation of twined structures is found to be due to the contraction of surface Pt atoms of the nuclei driven by high levels of external stress generated from depositing an overlayer of the incompletely reduced(Pt) nanoclusters with strong Pt Pt interactions on the growing nuclei.
机译:证明了一种通用且简便的固液界面介导的还原途径,可实现高度选择性的单分散Pt纳米十面体(NDs)和纳米二十面体(NI)的合成。 Pt NIs的大小为12.6 nm,选择性为88%,其边界为二十(111)个小平面。通过将MGS的添加量从1更改为10 mg,可以获得5 mg的最佳选择性值。在延长的生长过程中,归因于残余Pt离子的诱导或总能量最小化的驱动,产生了热力学上受欢迎的Pt ND或NI。发现孪晶结构的形成是由于核的表面Pt原子的收缩所致,该收缩是由高水平的外部应力驱动的,该外部应力是由在生长的核上沉积具有强Pt Pt相互作用的不完全还原的(Pt)纳米团簇形成的。

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