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Entropic patchiness drives multi-phase coexistence in discotic colloid–depletant mixtures

机译:盘状胶体贫化混合物中的熵斑块驱动多相共存

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摘要

Entropy–driven equilibrium phase behaviour of hard particle dispersions can be understood from excluded volume arguments only. While monodisperse hard spheres only exhibit a fluid–solid phase transition, anisotropic hard particles such as rods, discs, cuboids or boards exhibit various multi–phase equilibria. Ordering of such anisotropic particles increases the free volume entropy by reducing the excluded volume between them. The addition of depletants gives rise to an entropic patchiness represented by orientation–dependent attractions resulting in non–trivial phase behaviour. We show that free volume theory is a simple, generic and tractable framework that enables to incorporate these effects and rationalise various experimental findings. Plate-shaped particles constitute the main building blocks of clays, asphaltenes and chromonic liquid crystals that find widespread use in the food, cosmetics and oil industry. We demonstrate that mixtures of platelets and ideal depletants exhibit a strikingly rich phase behaviour containing several types of three–phase coexistence areas and even a quadruple region with four coexisting phases.
机译:只能通过排除的体积参数来理解硬颗粒分散体的熵驱动平衡相行为。虽然单分散硬球仅表现出流固相变,但各向异性的硬质颗粒(如棒,盘,长方体或板)则表现出各种多相平衡。这样的各向异性粒子的有序化通过减小它们之间的排除体积而增加了自由体积熵。贫化剂的添加会引起熵斑块,其表现为与方向有关的吸引力,导致非平凡的相行为。我们表明,自由体积理论是一个简单,通用且易于处理的框架,能够整合这些影响并合理化各种实验结果。板状颗粒构成了粘土,沥青质和发色液晶的主要结构单元,在食品,化妆品和石油工业中得到广泛使用。我们证明血小板和理想的贫血的混合物表现出惊人的丰富的相行为,其中包含几种类型的三相共存区域,甚至是四个具有四个共存相的区域。

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