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弹性各向异性对十面体金纳米颗粒应变分布的影响。

Effects of elastic anisotropy on strain distributions in decahedral gold nanoparticles.

作者信息

Johnson Craig L, Snoeck Etienne, Ezcurdia Manex, Rodríguez-González Benito, Pastoriza-Santos Isabel, Liz-Marzán Luis M, Hÿtch Martin J

机构信息

CEMES-CNRS, 29, rue Jeanne-Marvig 31055 Toulouse, France.

出版信息

Nat Mater. 2008 Feb;7(2):120-4. doi: 10.1038/nmat2083. Epub 2007 Dec 16.

Abstract

Metallic nanoparticles exhibit exceptional optoelectronic properties with applications in plasmonics, biosensing and nanomedicine. Recently, new synthesis techniques have enabled precise control over the sizes and shapes of metal nanoparticles, occasionally leading to morphologies that cannot be properly characterized using standard techniques. An example is five-fold-twinned decahedral Au nanoparticles, which are intrinsically strained as a result of their unique geometry. Various competing models have been proposed to predict the strain states of such nanoparticles. Here, we present a detailed analysis of the internal structure of a decahedral Au nanoparticle using aberration-corrected high-resolution electron microscopy and strain mapping. Our measurements confirm the presence of a disclination, which is consistent with the commonly accepted strain model. However, we also observed shear gradients, which are absent from the models. By comparing our local strain determinations with finite-element calculations, we show the effect of elastic anisotropy on the strain state in these nanoparticles.

摘要

金属纳米颗粒具有卓越的光电特性,在等离子体学、生物传感和纳米医学等领域有着广泛应用。近来,新的合成技术已能精确控制金属纳米颗粒的尺寸和形状,偶尔会产生一些用标准技术无法恰当表征的形态。例如五次孪晶十面体金纳米颗粒,因其独特的几何形状而存在固有应变。人们提出了各种相互竞争的模型来预测此类纳米颗粒的应变状态。在此,我们利用像差校正高分辨率电子显微镜和应变映射对一个十面体金纳米颗粒的内部结构进行了详细分析。我们的测量结果证实了位错的存在,这与普遍接受的应变模型相符。然而,我们也观察到了模型中未出现的剪切梯度。通过将我们的局部应变测定结果与有限元计算结果进行比较,我们展示了弹性各向异性对这些纳米颗粒应变状态的影响。

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