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分形簇的热重构:以草莓状核壳聚合物胶体为例。

Thermal restructuring of fractal clusters: the case of a strawberry-like core-shell polymer colloid.

作者信息

Jia Zichen, Wu Hua, Morbidelli Massimo

机构信息

Institute for Chemical and Bioengineering, Department of Chemistry and Applied Biosciences, ETH Zurich, 8093 Zurich, Switzerland.

出版信息

Langmuir. 2007 May 8;23(10):5713-21. doi: 10.1021/la063254s. Epub 2007 Apr 4.

DOI:10.1021/la063254s
PMID:17407331
Abstract

Thermal restructuring of fractal styrene-acrylate copolymer clusters dispersed in water has been investigated experimentally in the temperature range between 313 and 363 K. The particles constituting the clusters are of strawberry-like core-shell structure with a soft core and a rigid shell grafted on the core polymer chains. Due to the incomplete coverage of the core, the rather soft core may "flow out" through the open areas of the shell, leading to coalescence with the neighboring particles. The clusters were generated under diffusion-limited cluster aggregation conditions, and the restructuring kinetics was monitored by small-angle light scattering. Two sets of thermal restructuring experiments have been performed at various temperatures: (1) restructuring of growing clusters during aggregation and (2) restructuring of preformed clusters in the absence of aggregation. It is found that restructuring occurs only at temperature values above 323 K. In the absence of aggregation, restructuring leads to an increase of the fractal dimension and a decrease of the radius of gyration of the clusters. At sufficiently long times, both quantities reach a plateau value due to the presence of the grafted rigid shell, which constrains the coalescence of the soft core. A simple model, based on coalescence theory of liquid droplets and accounting for the incomplete coalescence and its dependence on temperature, has been developed to interpret the restructuring kinetics in the absence of aggregation. It is found that the proposed model can represent the measured experimental data well.

摘要

在313至363K的温度范围内,对分散在水中的分形苯乙烯-丙烯酸酯共聚物簇的热重构进行了实验研究。构成簇的颗粒具有草莓状的核壳结构,核软,壳刚性接枝在核聚合物链上。由于核的覆盖不完全,相当软的核可能会通过壳的开放区域“流出”,导致与相邻颗粒聚结。这些簇是在扩散限制簇聚集条件下产生的,重构动力学通过小角光散射进行监测。在不同温度下进行了两组热重构实验:(1)聚集过程中生长簇的重构和(2)在无聚集情况下预形成簇的重构。发现重构仅在高于323K的温度值下发生。在无聚集的情况下,重构导致簇的分形维数增加和回转半径减小。在足够长的时间后,由于接枝刚性壳的存在,这两个量都达到一个平稳值,刚性壳限制了软核的聚结。基于液滴聚结理论并考虑不完全聚结及其对温度的依赖性,开发了一个简单模型来解释无聚集情况下的重构动力学。发现所提出的模型能够很好地表示实测实验数据。

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