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具有短程吸引力的单斑块胶体的平衡相

Equilibrium phases of one-patch colloids with short-range attractions.

作者信息

Preisler Zdeněk, Vissers Teun, Munaò Gianmarco, Smallenburg Frank, Sciortino Francesco

机构信息

Debye Institute for Nanomaterials Science, Utrecht University, Princetonplein 5, 3584CC, Utrecht, The Netherlands.

出版信息

Soft Matter. 2014 Jul 28;10(28):5121-8. doi: 10.1039/c4sm00505h.

Abstract

Inspired by experimental studies of short-ranged attractive patchy particles, we study with computer simulations the phase behavior and the crystalline structures of one-patch colloids with an interaction range equal to 5% of the particle diameter. In particular, we study the effects of the patch surface coverage fraction, defined as the ratio between the attractive and the total surface of a particle. Using free-energy calculations and thermodynamic integration schemes, we evaluate the equilibrium phase diagrams for particles with patch coverage fractions of 30%, 50% and 60%. For a 60% surface coverage fraction, we observe stable lamellar crystals consisting of stacked bilayers that directly coexist with a low density fluid. Inside the coexistence region, we observe the formation of lamellar structures also in direct NVT simulations, indicating that the barrier of formation is low and experimental realization is feasible. For sufficiently strong interactions, these structures spontaneously assemble from the fluid in simulations, suggesting that they might also easily form in experimental systems. In the Janus case, i.e. at 50% surface coverage fraction, no lamellar structures are formed, and the stable crystals are similar to those that have been found previously for a longer interaction range (i.e. 20% of the particle diameter). At 30% coverage fraction, we identify novel 'open' crystal structures with large unit cells of up to 14 particles that are stable in the strong interaction limit.

摘要

受短程吸引性补丁粒子实验研究的启发,我们通过计算机模拟研究了相互作用范围等于粒子直径5%的单补丁胶体的相行为和晶体结构。具体而言,我们研究了补丁表面覆盖分数的影响,该分数定义为粒子吸引表面与总表面之比。使用自由能计算和热力学积分方案,我们评估了补丁覆盖分数为30%、50%和60%的粒子的平衡相图。对于60%的表面覆盖分数,我们观察到由堆叠双层组成的稳定层状晶体,其与低密度流体直接共存。在共存区域内,我们在直接的NVT模拟中也观察到层状结构的形成,这表明形成障碍较低且实验实现是可行的。对于足够强的相互作用,这些结构在模拟中会从流体中自发组装,这表明它们在实验系统中也可能很容易形成。在Janus情况下,即表面覆盖分数为50%时,不会形成层状结构,稳定晶体与之前在更长相互作用范围(即粒子直径的20%)下发现的晶体相似。在30%的覆盖分数下,我们识别出具有多达14个粒子的大晶胞的新型“开放”晶体结构,这些结构在强相互作用极限下是稳定的。

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