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用高分子量热响应配体功能化的金纳米棒的平移和旋转扩散系数:去偏振动态光散射研究

Translational and rotational diffusion coefficients of gold nanorods functionalized with a high molecular weight, thermoresponsive ligand: a depolarized dynamic light scattering study.

作者信息

Feller Déborah, Otten Marius, Hildebrandt Marco, Krüsmann Marcel, Bryant Gary, Karg Matthias

机构信息

Physikalische Chemie I: Kolloide und Nanooptik, Heinrich-Heine-Universität Düsseldorf, 40225 Düsseldorf, Germany.

Physics, School of Science, RMIT University, Melbourne, Victoria 3001, Australia.

出版信息

Soft Matter. 2021 Apr 21;17(15):4019-4026. doi: 10.1039/d1sm00077b.

Abstract

Probing the rotational and translational diffusion and colloidal stability of nanorods is of significant fundamental interest with implications for many different applications. Recently R. Nixon-Luke and G. Bryant presented a method to analyze angle-dependent depolarized dynamic light scattering data allowing for the clear separation of the translational and rotational diffusion coefficients of gold nanorods in dilute suspension (R. Nixon-Luke and G. Bryant, Part. Part. Syst. Charact., 2018, 36, 1800388). In the present work we applied this analysis to gold nanorods decorated with high molecular weight, thermoresponsive poly-N-isopropylacrylamide ligands, which results in particles with lower effective aspect ratios. The temperature response of the ligand shell is studied. We precisely determine the translational and rotational diffusion coefficients over a broad range of temperatures and the results are compared to theoretical predictions. The results show that as temperature increases the ligands collapse, and the effective aspect ratio increases as the particle shape transitions from prolate spheroid at low temperatures to more cylindrical at high temperatures.

摘要

探究纳米棒的旋转和平动扩散以及胶体稳定性具有重大的基础研究意义,对许多不同应用都有影响。最近,R. Nixon-Luke和G. Bryant提出了一种分析角度相关的去偏振动态光散射数据的方法,该方法能够清晰地分离稀悬浮液中金纳米棒的平动和旋转扩散系数(R. Nixon-Luke和G. Bryant,《颗粒与颗粒系统表征》,2018年,36卷,1800388)。在本工作中,我们将此分析方法应用于装饰有高分子量、热响应性聚N-异丙基丙烯酰胺配体的金纳米棒,这导致颗粒具有更低的有效长径比。研究了配体壳层的温度响应。我们精确测定了在很宽温度范围内的平动和旋转扩散系数,并将结果与理论预测进行了比较。结果表明,随着温度升高,配体发生塌缩,并且随着颗粒形状从低温下的长椭球体转变为高温下更接近圆柱体,有效长径比增大。

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