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Long wavelength undulations dominate dynamics in large surfactant membrane patches

机译:长波长波动主导动力大型表面活性剂膜补丁

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摘要

By exposing microemulsions to small (80 nm diameter) and large (500 nm) disk shaped clay particles we were able to show the presence of long wavelength undulations that only occur for large membrane patches. A combination of small angle neutron scattering (SANS) and neutron spin echo (NSE) experiments have been applied to study microemulsions. These, consisting of D2O, d-decane and the surfactant C10E4, were used in connection with Laponite (small) and Nanofil (large) clay. To our knowledge our experiments show for the first time that the clay platelets induce lamellar ordering adjacent to the clay discs in the otherwise bicontinuous microemulsion. This is due to the fact that in purely structural investigations, radial averaging smears out the signature of the lamellar phase. For thermodynamically fluctuating membranes near interfaces the theory of Seifert predicts a cross-over of the dispersion relationship from k(2) to a k(3)-dependence. With the correlation length of the membrane patches being confined by the dimension of the clay platelets we were able to show that this in fact takes place but is only present for the larger Nanofil particles.
机译:通过暴露纳米乳小(80海里盘直径)和大型(500海里)的粘土粒子,都不能显示噪音的存在长波长波动,只有发生大型膜补丁。中子散射角(SANS)和中子旋转回波实验已经应用于研究(研究)纳米乳。d-decane和表面活性剂C10E4中使用与Laponite(小)和Nanofil(大)粘土。粘土血小板的首次展示诱导片状订购毗邻粘土否则双连续的光盘微乳液。纯粹的结构调查,径向平均涂片的签名层状相。膜界面附近塞弗特的理论预测一个交叉的色散从k的关系(2)k(3)的依赖。膜的相关长度补丁被粘土的维数限制血小板我们能够证明这个事实发生但现在仅仅是更大的Nanofil学。

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