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Determining the composition of gold nanoparticles: a compilation of shapes sizes and calculations using geometric considerations

机译:确定金纳米粒子的组成:形状尺寸和几何考虑的计算的汇编

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摘要

AbstractSize, shape, overall composition, and surface functionality largely determine the properties and applications of metal nanoparticles. Aside from well-defined metal clusters, their composition is often estimated assuming a quasi-spherical shape of the nanoparticle core. With decreasing diameter of the assumed circumscribed sphere, particularly in the range of only a few nanometers, the estimated nanoparticle composition increasingly deviates from the real composition, leading to significant discrepancies between anticipated and experimentally observed composition, properties, and characteristics. We here assembled a compendium of tables, models, and equations for thiol-protected gold nanoparticles that will allow experimental scientists to more accurately estimate the composition of their gold nanoparticles using TEM image analysis data. The estimates obtained from following the routines described here will then serve as a guide for further analytical characterization of as-synthesized gold nanoparticles by other bulk (thermal, structural, chemical, and compositional) and surface characterization techniques. While the tables, models, and equations are dedicated to gold nanoparticles, the composition of other metal nanoparticle cores with face-centered cubic lattices can easily be estimated simply by substituting the value for the radius of the metal atom of interest.
机译:摘要大小,形状,整体组成和表面功能在很大程度上决定了金属纳米粒子的特性和应用。除了定义明确的金属团簇之外,通常还假设纳米颗粒核的准球形形状来估计其组成。随着假定外接球的直径减小,特别是在仅几纳米的范围内,估计的纳米颗粒组成越来越偏离实际组成,导致预期的和实验观察到的组成,性质和特性之间存在显着差异。我们在这里为硫醇保护的金纳米颗粒组装了表格,模型和方程式的汇总表,这将使实验科学家可以使用TEM图像分析数据更准确地估算其金纳米颗粒的组成。通过遵循此处描述的例程获得的估计值将作为通过其他本体(热,结构,化学和组成)和表面表征技术对合成的金纳米颗粒进行进一步分析表征的指南。尽管这些表,模型和方程式专用于金纳米颗粒,但只需用目标金属原子的半径值代替,即可轻松估算出具有面心立方晶格的其他金属纳米颗粒核的组成。

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