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Characterization of Size, Anisotropy, and Density Heterogeneity of Nanoparticles by Sedimentation Velocity

机译:沉降速度表征纳米粒子的尺寸,各向异性和密度异质性

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A critical problem in materials science is the accurate characterization of the size dependent properties of colloidal inorganic nanocrystals. Due to the intrinsic polydispersity present during synthesis, dispersions of such materials exhibit simultaneous heterogeneity in density ρ, molar mass M, and particle diameter d. The density increments (partial deriv)ρ/(partial deriv)d and (partial deriv)ρ/(partial deriv)M of these nanoparticles, if known, can then provide important information about crystal growth and particle size distributions. For most classes of nanocrystals, a mixture of surfactants is added during synthesis to control their shape, size, and optical properties. However, it remains a challenge to accurately determine the amount of passivating ligand bound to the particle surface post synthesis. The presence of the ligand shell hampers an accurate determination of the nanocrystal diameter. Using CdSe and PbS semiconductor nanocrystals, and the ultrastable silver nanoparticle (M_4Ag_(44)(p-MBA)_(30)), as model systems, we describe a Custom Grid method implemented in UltraScan-III for the characterization of nanoparticles and macromolecules using sedimentation velocity analytical ultracentrifugation. We show that multiple parametrizations are possible, and that the Custom Grid method can be generalized to provide high resolution composition information for mixtures of solutes that are heterogeneous in two out of three parameters. For such cases, our method can simultaneously resolve arbitrary two-dimensional distributions of hydrodynamic parameters when a third property can be held constant. For example, this method extracts partial specific volume and molar mass from sedimentation velocity data for cases where the anisotropy can be held constant, or provides anisotropy and partial specific volume if the molar mass is known.
机译:材料科学中的一个关键问题是胶体无机纳米晶体的尺寸依赖性特性的准确表征。由于在合成过程中存在固有的多分散性,因此此类材料的分散体在密度ρ,摩尔质量M和粒径d上同时表现出异质性。如果知道,这些纳米粒子的密度增量(偏导数ρ/(偏导数)d和(偏导数)ρ/(偏导数)M)可以提供有关晶体生长和粒度分布的重要信息。对于大多数种类的纳米晶体,在合成过程中添加表面活性剂混合物以控制其形状,大小和光学性质。然而,精确地确定合成后结合到颗粒表面的钝化配体的量仍然是一个挑战。配体壳的存在妨碍了纳米晶体直径的精确测定。使用CdSe和PbS半导体纳米晶体以及超稳定的银纳米粒子(M_4Ag_(44)(p-MBA)_(30))作为模型系统,我们描述了在UltraScan-III中实现的Custom Grid方法,用于表征纳米颗粒和大分子采用沉降速度分析超速离心。我们表明多种参数化是可能的,并且可以将“定制网格”方法通用化,以为三个参数中的两个参数中不均匀的溶质混合物提供高分辨率的成分信息。对于这种情况,当第三个属性可以保持恒定时,我们的方法可以同时解析流体动力学参数的任意二维分布。例如,对于各向异性可以保持恒定的情况,此方法从沉降速度数据中提取部分比容和摩尔质量,如果已知摩尔质量,则可以提供各向异性和部分比容。

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