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Non-monotonic concentration dependence of the electro-phoretic mobility of charged spheres in realistic salt free suspensions

机译:在现实含盐不含悬浮液中带电球体的电验型球体的非单调浓度依赖性

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摘要

Using super-heterodyne Doppler velocimetry with multiple scattering correction, we extend the optically accessible range of concentrations in experiments on colloidal electro-kinetics. Here, we measured the electro-phoretic mobility and the DC conductivity of aqueous charged sphere suspensions covering about three orders of magnitude in particle concentrations and transmissions as low as 40%. The extended concentration range for the first time allows the demonstration of a non-monotonic concentration dependence of the mobility for a single particle species. Our observations reconcile previous experimental observations made on other species over restricted concentration ranges. We compare our results to the state-of-the-art theoretical calculations using a constant particle charge and the carefully determined experimental boundary conditions as input. In particular, we consider the so-called realistic salt free conditions, i.e., we respect the release of counterions by the particles, the solvent hydrolysis, and the formation of carbonic acid from dissolved neutral CO2. We also compare our results to previous results obtained under similarly well-defined conditions. This allows identification of three distinct regions of differing density dependence. There is an ascent during the build-up of double layer overlap, which is not expected by theory, an extended plateau region in quantitative agreement with theoretical expectation based on a constant effective charge and a sudden decrease, which occurs way before the expected gradual decrease. Our observations suggest a relation of the non-monotonic behavior to a decrease in particle charge, and we tentatively discuss possibly underlying mechanisms.
机译:使用具有多种散射校正的超外差多普勒速度,我们在胶体电气动力学实验中扩展了光学访问范围的浓度。在这里,我们测量的电泳动的移动性和水性带电球体悬浮液覆盖大约在粒子浓度三个数量级和传输低至40%的直流电导率。第一次扩展浓度范围允许证明单调浓度对单个颗粒物种的迁移率依赖性。我们的观察结果在受限制的浓度范围内调节对其他物种的实验观察。我们使用恒定粒子电荷和仔细确定的实验边界条件将结果与最先进的理论计算的结果进行比较。特别是,我们考虑所谓的现实含盐条件,即,我们尊重颗粒,溶剂水解和来自溶解中性CO 2的碳酸的抗衡离子的释放。我们还将我们的结果与在类似明确定义的条件下获得的先前结果进行了比较。这允许识别不同密度依赖性的三个不同区域。在两层重叠的积聚期间,在理论上没有预期的双层重叠的积聚期间,定量协议中的扩展高原地区与基于恒定有效充电的理论期望和突然减少,在预期逐步减少之前发生的方式。我们的观察结果表明非单调行为对粒子充电的减少,我们暂时讨论可能是潜在的机制。

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