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首页> 外文期刊>Journal of Rheology >The rheology and microstructure of branched micelles under shear
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The rheology and microstructure of branched micelles under shear

机译:剪切作用下分支胶束的流变学和微观结构

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摘要

The rheology and shear-induced structures of a series of self-assembled surfactant wormlike micelles (WLMs) with varying levels of branching are measured using rheo- and flow-small angle neutron scattering (SANS). The degree of branching in the mixed cationic/anionic surfactant (cetyltrimethylammonium tosylate/sodium dodecyl benzene sulfonate) WLMs is controlled via the addition of the hydrotropic salt sodium tosylate and verified by cryo-transmission electron microscopy. The linear viscoelasticity of the low salt (linear) micellar solutions is well described as an extended Maxwell (Oldroyd-B) fluid, and samples exhibit shear banding under steady-shear flow. The linear viscoelasticity of more highly branched solutions deviates from Maxwellian behavior, where the plateau in G' gradually increases in slope with increasing salt content. The higher salt solutions exhibit a shear thinning regime, followed by a shear thickening regime at high shear rates. Micelle segmental alignment in the flow-gradient plane is a nonmonotonic function of salt level and radial position. Spatially resolved measurements of the segmental alignment corroborate shear banding in the linear WLMs, and the absence of shear banding with branching. Rheo-SANS measurements show that the onset of shear thickening at high rates corresponds to a structural transition. The results of this study link micellar microstructure and topology to the measured shear rheology of WLM solutions. (C) 2015 The Society of Rheology.
机译:使用流变和流动小角中子散射(SANS)测量了一系列具有不同分支水平的自组装表面活性剂蠕虫状胶束(WLM)的流变学和剪切诱导结构。混合阳离子/阴离子表面活性剂(鲸蜡基三甲基甲苯磺酸铵/十二烷基苯磺酸钠)中的支化度可通过添加水溶性甲苯磺酸钠盐来控制,并通过低温透射电子显微镜进行验证。低盐(线性)胶束溶液的线性粘弹性很好地描述为扩展的麦克斯韦(Oldroyd-B)流体,并且样品在稳定剪切流下显示出剪切带。支化度更高的溶液的线性粘弹性不同于麦克斯韦行为,麦克斯韦行为是随着盐含量的增加,G'平台的坡度逐渐增加。高盐溶液表现出剪切稀化状态,然后在高剪切速率下显示剪切增稠状态。流量梯度平面中的胶束分段对准是盐水平和径向位置的非单调函数。分段对齐的空间分辨测量结果证实了线性WLM中的剪切带,并且没有带分支的剪切带。 Rheo-SANS测量结果表明,高剪切剪切增厚的开始与结构转变相对应。这项研究的结果将胶束的微观结构和拓扑结构与WLM溶液的测量的剪切流变学联系起来。 (C)2015流变学学会。

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