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Phase equilibria and glass transition in colloidal systems with short-ranged attractive interactions: Application to protein crystallization - art. no. 031407

机译:具有短程吸引相互作用的胶体系统中的相平衡和玻璃化转变:在蛋白质结晶中的应用-艺术。没有。 031407

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摘要

We have studied a model of a complex fluid consisting of particles interacting through a hard-core and short-range attractive potential of both Yukawa and square-well form. Using a hybrid method, including a self-consistent and quite accurate approximation for the liquid integral equation in the case of the Yukawa fluid, perturbation theory to evaluate the crystal free energies, and mode-coupling theory of the glass transition, we determine both the equilibrium phase diagram of the system and the lines of equilibrium between the supercooled fluid and the glass phases. For these potentials, we study the phase diagrams for different values of the potential range, the ratio of the range of the interaction to the diameter of the repulsive core being the main control parameter. Our arguments are relevant to a variety of systems, from dense colloidal systems with depletion forces, through particle gels, nanoparticle aggregation, and globular protein crystallization. [References: 96]
机译:我们研究了一种复杂流体的模型,该流体由通过Yukawa和方井形式的硬核和短程吸引势相互作用的粒子组成。使用混合方法,包括对汤河流体情况下的液体积分方程的自洽且非常精确的近似,用于评估晶体自由能的微扰理论以及玻璃化转变的模式耦合理论,我们确定了系统的平衡相图以及过冷流体和玻璃相之间的平衡线。对于这些电势,我们研究了电势范围不同值的相图,其中相互作用范围与斥力铁心直径的比值是主要控制参数。我们的论点与各种各样的系统有关,从具有耗尽力的稠密胶体系统到粒子凝胶,纳米粒子聚集和球状蛋白质结晶。 [参考:96]

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