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Reversible shear-induced crystallization above equilibrium freezing temperature in a lyotropic surfactant system

机译:溶致表面活性剂体系中高于平衡冻结温度的可逆剪切诱导结晶

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摘要

We demonstrate a unique shear-induced crystallization phenomenon above the equilibrium freezing temperature in weakly swollen isotropic and lamellar mesophases with bilayers formed in a cationic-anionic mixed surfactant system. Synchrotron rheological X-ray diffraction study reveals the crystallization transition to be reversible under shear (i.e., on stopping the shear, the nonequilibrium crystalline phase melts back to the equilibrium mesophase). This is different from the shear-driven crystallization below , which is irreversible. Rheological optical observations show that the growth of the crystalline phase occurs through a preordering of the phase to an phase induced by shear flow, before the nucleation of the phase. Shear diagram of the phase constructed in the parameter space of shear rate vs. temperature exhibits and transitions above the equilibrium crystallization temperature , in addition to the irreversible shear-driven nucleation of in the phase below . In addition to revealing a unique class of nonequilibrium phase transition, the present study urges a unique approach toward understanding shear-induced phenomena in concentrated mesophases of mixed amphiphilic systems.
机译:我们在阳离子-阴离子混合表面活性剂体系中形成双层的弱溶各向同性和层状中间相中,在平衡凝固温度以上证明了独特的剪切诱导结晶现象。同步流变X射线衍射研究表明,在剪切作用下结晶转变是可逆的(即在停止剪切时,非平衡结晶相融回到平衡中间相)。这与下面的剪切驱动结晶不同,后者是不可逆的。流变光学观察表明,在相的成核之前,晶相的生长通过将相预排序成由剪切流诱导的相而发生。除了在下面的相中不可逆的剪切驱动成核作用之外,在剪切速率与温度的参数空间中构造的相的剪切图在平衡结晶温度以上显示并转变。除了揭示一类独特的非平衡相变之外,本研究还敦促采用一种独特的方法来理解混合两亲体系的浓中间相中的剪切诱导现象。

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