首页> 外文期刊>Journal of the American Chemical Society >Fragmentation Of Fiberlike Structures: Sonication Studies Ofrncylindrical Block Copolymer Micelles And Behavioralrncomparisons To Biological Fibrils
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Fragmentation Of Fiberlike Structures: Sonication Studies Ofrncylindrical Block Copolymer Micelles And Behavioralrncomparisons To Biological Fibrils

机译:纤维状结构的碎裂:圆弧形嵌段共聚物胶束的超声研究和与生物原纤维的行为比较

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In alkane solvents, poly(isoprene-b-ferrocenyldimethylsilane) (PI-b-PFS) block copolymer forms fiberlike micelles, which show intriguing similarities with biological fibers such as amyloid fibers. Both systems exhibit fiber growth by a nucleated self-assembly mechanism and rapidly fragment upon exposure to the shear forces of ultrasonic irradiation. Sonication of PI-b-PFS cylindrical micelles was studied quantitatively by static light scattering and by electron microscopy. Both techniques are in excellent agreement and show that the weight-average length of sonicated micelles decreases as a function of sonication time. Simulation of the cleavage of micelles using different scission models shows that micelle fragmentation follows a Gaussian model and that the scission is highly dependent on micelle length, in contrast to DNA and polymer chain scission. We speculate that biological fibers, which are similar in length and rigidity to PFS block copolymer micelles, fragment by a similar mechanism when subjected to sonication.
机译:在烷烃溶剂中,聚(异戊二烯-b-二茂铁基二甲基硅烷)(PI-b-PFS)嵌段共聚物形成纤维状胶束,与生物纤维(如淀粉样蛋白纤维)表现出令人着迷的相似性。两种系统均通过有核自组装机制展现出纤维的生长,并在暴露于超声辐射的剪切力时迅速破碎。 PI-b-PFS圆柱形胶束的超声处理通过静态光散射和电子显微镜进行了定量研究。两种技术都非常吻合,表明超声处理的胶束的重均长度随超声处理时间的缩短而减小。使用不同的断裂模型对胶束的裂解进行模拟显示,胶束的断裂遵循高斯模型,并且与DNA和聚合物链断裂相比,该断裂高度依赖于胶束的长度。我们推测,长度和刚度与PFS嵌段共聚物胶束相似的生物纤维在进行超声处理时会以类似的机制断裂。

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