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Determination of nanoparticle size distribution together with density or molecular weight by 2D analytical ultracentrifugation

机译:通过二维分析超速离心测定纳米粒度分布以及密度或分子量

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摘要

Nanoparticles are finding many research and industrial applications, yet their characterization remains a challenge. Their cores are often polydisperse and coated by a stabilizing shell that varies in size and composition. No single technique can characterize both the size distribution and the nature of the shell. Advances in analytical ultracentrifugation allow for the extraction of the sedimentation (s) and diffusion coefficients (D). Here we report an approach to transform the s and D distributions of nanoparticles in solution into precise molecular weight (M), density (ρP) and particle diameter (dp) distributions. M for mixtures of discrete nanocrystals is found within 4% of the known quantities. The accuracy and the density information we achieve on nanoparticles are unparalleled. A single experimental run is sufficient for full nanoparticle characterization, without the need for standards or other auxiliary measurements. We believe that our method is of general applicability and we discuss its limitations.
机译:纳米颗粒正在发现许多研究和工业应用,但是其表征仍然是一个挑战。它们的核通常是多分散的,并被大小和组成变化的稳定壳包裹。没有任何一种技术可以同时描述外壳的尺寸分布和性质。分析超速离心技术的进步允许提取沉淀物和扩散系数(D)。在这里,我们报告了一种将溶液中纳米粒子的s和D分布转换为精确的分子量(M),密度(ρP)和粒径(dp)分布的方法。发现离散纳米晶体混合物的M在已知量的4%以内。我们在纳米颗粒上获得的准确性和密度信息无与伦比。一次实验即可完全表征纳米颗粒,而无需标准液或其他辅助测量。我们认为我们的方法具有普遍适用性,我们将讨论其局限性。

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