首页> 外文会议>Russian Foundation for Basic Research;Russian Academy of Sciences;International Symposium on Optics and Biophotonics: Saratov Fall Meeting >Citrate-reduced Au nanoparticles vs. monodisperse spheres: extinction and dynamic light scattering measurements
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Citrate-reduced Au nanoparticles vs. monodisperse spheres: extinction and dynamic light scattering measurements

机译:柠檬酸盐还原的金纳米颗粒与单分散球体的比较:消光和动态光散射测量

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The most common protocol for the synthesis of Au nanospheres is the reduction of gold salts by sodium citrate.However, the particles obtained by this method are not quite perfectly spherical and their optical and physical propertiessuffer from polydispersity and nonuniformity. In this work, we synthesized sets of quasispherical Au nanoparticles withsizes from 20 to 70 nm by citrate-based methods as well as single-crystal Au nanospheres with uniform diametersranging from 20 to 130 nm. Particles were characterized by TEM, UV-VIS and Dynamic Light Scattering (DLS). Wefound that the extinction spectra of monodisperse Au nanospheres are equal to those calculated by using Mie theory(both in the position and width of the plasmonic band). The deviation of shape from a sphere that is typical of citratestabilizednanoparticles leads to a significant departure of the optical properties from those predicted by Mie theory. Thenon-sphericity of these particles also affects the measurement of their size by DLS. In particular, citrate-stabilizednanoparticles display a bimodal size distribution associated to rotational diffusion.
机译:合成Au纳米球的最常见方法是柠檬酸钠还原金盐。 然而,通过这种方法获得的颗粒不是很理想的球形,并且它们的光学和物理性质 遭受多分散性和不均匀性的困扰。在这项工作中,我们合成了准球形金纳米粒子 柠檬酸盐基方法制备直径从20到70 nm的纳米颗粒,以及直径均匀的单晶Au纳米球 范围从20到130 nm。通过TEM,UV-VIS和动态光散射(DLS)对颗粒进行表征。我们 发现单分散金纳米球的消光光谱等于使用米氏理论计算的消光光谱 (在等离子体带的位置和宽度上)。柠檬酸盐稳定的典型形状与球体的偏差 纳米粒子导致光学性质与米氏理论预测的光学性质发生重大偏离。这 这些颗粒的非球形性也会影响DLS对其尺寸的测量。特别是柠檬酸盐稳定的 纳米颗粒显示出与旋转扩散相关的双峰尺寸分布。

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