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Consistence of the Mean Field Description of Charged Colloidal Crystal Properties

机译:带电胶体晶体特性的平均场描述的一致性

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The Debye-Hueckel-Potential in combination with an effective or renormalized charge is a widely and often successfully used concept to describe the interaction in charged colloidal model systems and the resulting suspension properties. In particular the phase behaviour can be described in dependence of the parameters particle number density, salt concentration and effective charge. We performed simultaneous measurements of the phase behaviour, the shear modulus and the low frequency conductivity of deionised aqueous suspensions of highly charged colloidal spheres. From the shear modulus the interaction potential at the nearest neighbour distance in terms of a Debye-Hueckel potential can be determined with an effective charge Z_G~* as free parameter. Conductivity measures the number of freely moving small ions Z_σ~* and thus relates to the ion condensation process in the electric double layer under conditions of finite macro-ion concentrations. We present the first experimental access of the pair energy of interaction in charged colloidal suspensions which describes both the elastic properties and the fluid crystalline phase behaviour. This means that a consistent description of the suspension properties is obtained, when Z_G~* is taken from the elasticity measurement.
机译:与有效或重整化电荷组合的Debye-Hueckel潜力是广泛的,通常成功使用的概念来描述带电胶体模型系统的相互作用和所得悬浮特性。特别地,可以根据参数粒子数密度,盐浓度和有效电荷来描述相行为。我们对高度带电胶体球的去离子水悬浮液的剪切模量和低频电导率进行了同时测量。从剪切模量可以用有效的充电Z_G〜*作为自由参数来确定最近邻距离的相互作用电位。电导率测量自由移动的小离子Z_σ〜*的数量,因此涉及在有限宏离子浓度的条件下的电双层中的离子冷凝过程。我们介绍了在带电性质和流体结晶相行为中的带电胶体悬浮液中的一对相互作用的第一实验访问。这意味着当从弹性测量中取出Z_G〜*时获得悬浮液性能的一致描述。

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