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聚合物溶液中反常旋转扩散的电光研究。

Electro-optical Study of the Anomalous Rotational Diffusion in Polymer Solutions.

作者信息

Martín-Martín Sergio, Ramos-Tejada María Del Mar, Rubio-Andrés Antonio, Bonhome-Espinosa Ana B, Delgado Ángel V, Jiménez María L

机构信息

Department of Applied Physics, School of Sciences, University of Granada, 18071Granada, Spain.

Department of Physics, Linares Higher Polytechnic School, University of Jaén, 23700Linares(Jaén), Spain.

出版信息

Macromolecules. 2023 Jan 12;56(2):518-527. doi: 10.1021/acs.macromol.2c01461. eCollection 2023 Jan 24.

Abstract

Brownian diffusion of spherical nanoparticles is usually exploited to ascertain the rheological properties of complex media. However, the behavior of the tracer particles is affected by a number of phenomena linked to the interplay between the dynamics of the particles and polymer coils. For this reason, the characteristic lengths of the dispersed entities, depletion phenomena, and the presence of sticking conditions have been observed to affect the translational diffusion of the probes. On the other hand, the retardation effect of the host fluid on the rotational diffusion of nonspherical particles is less understood. We explore the possibility of studying this phenomenon by analyzing the electro-orientation of the particles in different scenarios in which we vary the ratio between the particle and polymer characteristic size, and the geometry of the particles, including both elongated and oblate shapes. We find that the Stokes-Einstein relation only applies if the radius of gyration of the polymer is much shorter than the particle size and when some repulsive interaction between both is present.

摘要

通常利用球形纳米颗粒的布朗扩散来确定复杂介质的流变特性。然而,示踪颗粒的行为受到许多与颗粒动力学和聚合物线圈之间相互作用相关的现象的影响。因此,已观察到分散实体的特征长度、耗尽现象和粘附条件的存在会影响探针的平动扩散。另一方面,主体流体对非球形颗粒旋转扩散的阻滞效应了解较少。我们通过分析颗粒在不同情况下的电取向来探索研究这一现象的可能性,在这些情况下,我们改变颗粒与聚合物特征尺寸之间的比率以及颗粒的几何形状,包括细长形状和扁球形。我们发现,只有当聚合物的回转半径比颗粒尺寸短得多且两者之间存在某种排斥相互作用时,斯托克斯 - 爱因斯坦关系才适用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc63/9879198/51508f1a8020/ma2c01461_0001.jpg

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