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用于受超声作用的颗粒表征的动态光散射:关于致密颗粒和声响应微凝胶的研究

Dynamic light scattering for particle characterization subjected to ultrasound: a study on compact particles and acousto-responsive microgels.

作者信息

Stock Sebastian, von Klitzing Regine, Rahimzadeh Amin

机构信息

Soft Matter at Interfaces, Institute for Condensed Matter Physics, Technische Universität Darmstadt, Hochschulstraße 8, 64289, Darmstadt, Germany.

出版信息

Sci Rep. 2024 Jan 10;14(1):989. doi: 10.1038/s41598-024-51404-0.

Abstract

In this report, we investigate dynamic light scattering (DLS) from both randomly diffusing silica particles and acousto-responsive microgels in aqueous dispersions under ultrasonic vibration. Employing high-frequency ultrasound (US) with low amplitude ensures that the polymers remain intact without damage. We derive theoretical expressions for the homodyne autocorrelation function, incorporating the US term alongside the diffusion term. Subsequently, we successfully combined US with a conventional DLS system to experimentally characterize compact silica particles and microgels under the influence of US. Our model allows us to extract essential parameters, including particle size, frequency, and amplitude of particle vibration, based on the correlation function of the scattered light intensity. The studies involving non-responsive silica particles demonstrate that the US does not disrupt size determination, establishing them as suitable reference systems. In addition, we could be able to experimentally resolve the µs-order motion of particles for the first time. Microgels subjected to the US show the same swelling/shrinking behavior as that induced by temperature but with significantly faster kinetics. The findings of this study have potential applications in various industrial and biomedical fields such as smart coatings and drug delivery that benefit from the characterization of macromolecules subjected to the US. Furthermore, the current work may lead to characterizing the mechanical properties of soft particles based on their vibration amplitude extracted using this method.

摘要

在本报告中,我们研究了在超声振动下,水性分散体中随机扩散的二氧化硅颗粒和对声响应的微凝胶的动态光散射(DLS)。采用低振幅的高频超声(US)可确保聚合物保持完整无损。我们推导了包含超声项和扩散项的零差自相关函数的理论表达式。随后,我们成功地将超声与传统的DLS系统相结合,以实验表征在超声影响下的致密二氧化硅颗粒和微凝胶。我们的模型使我们能够根据散射光强度的相关函数提取基本参数,包括颗粒大小、频率和颗粒振动幅度。涉及无响应二氧化硅颗粒的研究表明,超声不会干扰尺寸测定,使其成为合适的参考系统。此外,我们首次能够通过实验解析颗粒的微秒级运动。受超声作用的微凝胶表现出与温度诱导的相同的溶胀/收缩行为,但动力学明显更快。本研究的结果在各种工业和生物医学领域具有潜在应用,如智能涂层和药物递送,这些领域受益于对受超声作用的大分子的表征。此外,目前的工作可能会基于使用该方法提取的振动幅度来表征软颗粒的机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c70e/10781767/c5e1377285b4/41598_2024_51404_Fig1_HTML.jpg

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