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Measurements of screening length in salt solutions by total internal reflection microscopy: Influence of van der Waals forces and instrumental noise

机译:通过全内反射显微镜测量盐溶液中的筛选长度:范德华力和仪器噪声的影响

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Total internal reflection microscopy (TIRM) measurements of colloidal spheres in aqueous electrolyte solutions have been carried out with focus on screening properties of various electrolytes and methods and analyses for reliably extracting them from TIRM measurements. Approximations based on Lifshitz theory of flat plates are found to yield van der Waals interactions that are too strong compared to measured interaction potentials. Allowing for some attenuation of these interactions due to surface roughness, a consistent set of screening lengths can be extracted by fitting a model of the interaction, comprising screened Coulomb, van der Waals, and gravitational interactions, to the TIRM data. With the exception of the 2:2 electrolytes, the screening lengths extracted from the TIRM measurements are well described by Debye-Hückel theory, including some surfactants below their critical micelle concentration and electrolytes with large size asymmetries between anion and cation. In 2:2 electrolytes the screening lengths are found to be larger than the corresponding Debye length by as much as 50% at the highest salt concentrations studied. While this deviation is significantly larger than predictions of theory based on the primitive model of electrolytes, similar magnitudes are found from analysis of BD simulations with added noise at realistic levels in the incident intensity. The work shows that care has to be taken when extracting parameters governing potentials in the presence of noise, particularly at high ionic strengths when potentials become steep at short separations.
机译:已经进行了电解质水溶液中胶体球的全内反射显微镜(TIRM)测量,重点是筛选各种电解质的性质和方法,并进行分析以从TIRM测量中可靠地提取它们。发现基于Lifshitz平板理论的近似值所产生的范德华相互作用与测量的相互作用势相比太强。允许由于表面粗糙度而导致这些相互作用的某种程度的衰减,可以通过将相互作用的模型(包括已筛选的库仑,范德华力和重力相互作用)拟合到TIRM数据来提取一致的筛选长度集。除2:2电解质外,Debye-Hückel理论很好地描述了从TIRM测量中提取的筛选长度,包括一些低于其临界胶束浓度的表面活性剂以及阴离子和阳离子之间具有大尺寸不对称性的电解质。在所研究的最高盐浓度下,发现在2:2电解质中,筛选长度比相应的德拜长度大50%。尽管该偏差远大于基于电解质原始模型的理论预测,但通过对BD模拟的分析发现了相似的大小,并在入射强度的实际水平上增加了噪声。这项工作表明,在存在噪声的情况下提取控制电势的参数时必须格外小心,尤其是当离子在短距离分离时变得陡峭时,在高离子强度下尤其如此。

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