首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Shear-induced transitions between a planar lamellar phase and multilamellar vesicles: Continuous versus discontinuous transformation
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Shear-induced transitions between a planar lamellar phase and multilamellar vesicles: Continuous versus discontinuous transformation

机译:平面层状相和多层囊泡之间的剪切诱导转变:连续与不连续转变

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摘要

The shear-induced transitions between an oriented lamellar phase and shear-induced multilamellar vesicles (MLVs) in a nonionic surfactant system were studied by deuterium rheo-NMR spectroscopy as a function of time in start-up experiments at several temperatures and shear rates. By starting from an initial state of oriented lamellae and observing the transformation to the final steady state of MLVs and vice-versa, two different mechanisms were found, depending on the direction of the transition and the initial state. The transition is continuous when MLVs are formed, starting from the oriented lamellar phase. On the other hand, a discontinuous nucleation-and-growth process with a coexistence region is observed when transforming MLVs into an oriented lamellar phase.
机译:在几个温度和剪切速率下的启动实验中,通过氘流变核磁共振波谱研究了非离子表面活性剂系统中定向层状相与剪切诱导的多层囊泡(MLV)之间的剪切诱导跃迁。通过从定向薄片的初始状态开始,观察到MLV的最终稳态转变,反之亦然,发现了两种不同的机理,这取决于转变的方向和初始状态。当形成MLV时,过渡是连续的,从定向层状相开始。另一方面,当将MLV转变为定向层状相时,会观察到具有共存区域的不连续成核和生长过程。

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