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Micro-mechanical continuum-mechanical and AFM-based descriptions of elasticity in open cylindrical micellar filaments

机译:基于微机械连续机械和基于AFM的开放式圆柱状胶束细丝弹性描述

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摘要

We present theoretical and experimental descriptions of the elasticity of cylindrical micellar filaments using micro-mechanical and continuum theories, and Atomic Force Microscopy. Following our micro-mechanical elasticity model for micellar filaments [Asgari, Eur. Phys. J. E 2015, 38(9)], the elastic bending energy of hemispherical end caps is found. The continuum description of the elastic bending energy of a cylindrical micellar filament is also derived using constrained Cosserat rod theory. While the continuum approach provides macroscopic description of the strain energy of the micellar filament, the micro-mechanical approach has a microscopic view of the filament, and provides expressions for kinetic variables based on a selected interaction potential between the molecules comprising the filament. Our model predicts the dependence of the elastic modulus of the micellar filaments on their diameter, which agrees with previous experimental observations. Atomic force microscopy is applied to estimate the elastic modulus of the filaments using force volume analysis. The obtained values of elastic modulus yield the persistence length of micellar filaments on the same order of the previously reported values. Consistent with previous studies, our results indicate that semi-flexible linear micelles have a relatively large local strain energy at their end points, which explains their tendency to fuse to minimize the number of end caps at relatively low total surfactant volume fractions. Also, the elastic modulus of micellar filaments was found to increase when the indentation frequency increases, a finding which agrees with previous rheological observations on the bulk shear modulus of micellar solutions.
机译:我们使用微机械和连续理论以及原子力显微镜对圆柱形胶束细丝的弹性进行理论和实验描述。遵循我们的胶束细丝微机械弹性模型[Asgari,Eur。物理[J. E 2015,38(9)],发现半球形端盖的弹性弯曲能。圆柱状胶束细丝的弹性弯曲能的连续描述也可以通过约束Cosserat杆理论得出。尽管连续方法提供了对胶束细丝应变能的宏观描述,但微机械方法具有细丝的微观视图,并基于包含细丝的分子之间的选定相互作用势提供了动力学变量的表达式。我们的模型预测了胶束细丝的弹性模量对直径的依赖性,这与以前的实验观察结果一致。使用力体积分析,使用原子力显微镜来估计长丝的弹性模量。所获得的弹性模量值产生的胶束细丝的持久长度与先前报道的值相同。与先前的研究一致,我们的结果表明,半柔性线性胶束在其端点处具有相对较大的局部应变能,这说明了它们在相对较低的总表面活性剂体积分数下会融合以最小化端帽数量的趋势。另外,发现随着压痕频率的增加,胶束细丝的弹性模量增加,这一发现与先前关于胶束溶液的整体剪切模量的流变学观察相一致。

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  • 作者

    Meisam Asgari;

  • 作者单位
  • 年(卷),期 -1(13),39
  • 年度 -1
  • 页码 7112–7128
  • 总页数 40
  • 原文格式 PDF
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