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Larger or more? Nanoparticle characterisation methods for recognition of dimers

机译:更大或更大?识别二聚体的纳米颗粒表征方法

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Our article dissects the problem of understanding the origin of size heterogeneity in polydispersed nanoparticle samples. A commercially available multimodal material representing a typical borderline case of the nano definition is characterised with various state of the art techniques. We focus on dimer (multimer) recognition capability of different techniques, considering the potential of single and combined analytical solutions. The performance of dynamic light scattering (DLS), nanoparticle tracking analysis (NTA), online coupled asymmetric field flow fractionation – multi angle light scattering (MALS) – DLS (FFF-MALS-DLS), tunable resistive pulse sensing (TRPS), centrifugal liquid sedimentation (CLS), analytical ultracentrifugation (AUC) and transmission electron microscopy (TEM) is discussed. NTA, TRPS and FFF-MALS are shown to resolve the multimodal size distribution of the sample, while batch mode DLS, the most widespread tool in characterisation laboratories, fails. Besides of complex methods like TEM imaging after FFF separation and FFF-MALS-DLS in combination with adequate mathematical shape factor models, centrifugal methods are documented as simple analytical tools that are able to indicate the presence of dimers made of rigid spherical nanoparticles.
机译:我们的文章剖析了了解多分散纳米颗粒样品中尺寸不均一性起源的问题。用各种现有技术表征了代表纳米定义的典型边界情况的可商购获得的多峰材料。考虑到单一和组合分析解决方案的潜力,我们专注于不同技术的二聚体(多聚体)识别能力。动态光散射(DLS),纳米粒子跟踪分析(NTA),在线耦合非对称场流分离的性能–多角度光散射(MALS)– DLS(FFF-MALS-DLS),可调电阻脉冲感测(TRPS),离心讨论了液体沉降(CLS),分析超速离心(AUC)和透射电子显微镜(TEM)。已显示NTA,TRPS和FFF-MALS可以解决样品的多峰尺寸分布问题,而批处理模式DLS(表征实验室中最广泛使用的工具)却无法使用。除了复杂的方法(如FFF分离后的TEM成像和FFF-MALS-DLS与适当的数学形状因子模型相结合)外,离心方法还被证明是简单的分析工具,能够指出由刚性球形纳米颗粒制成的二聚体。

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