Abstract
We present a different and efficient method for implementing the analytical solution of Ornstein-Zernike equation for two-Yukawa fluids in the mean spherical approximation. We investigate, in particular, the conditions for the formation of an extra low-Q peak in the structure factor, which we interpret as due to cluster formation in the two-Yukawa fluid when the interparticle potential is composed of a short-range attraction and a long-range repulsion. We then apply this model to interpret the small angle neutron scattering data for protein solutions at moderate concentrations and find out that the presence of a peak centered at Q=0 (zero-Q peak) besides the regular interaction peak due to charged proteins implies an existence of long-range attractive interactions besides the charge repulsion. © 2005 American Institute of Physics.
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CITATION STYLE
Liu, Y., Chen, W. R., & Chen, S. H. (2005). Cluster formation in two-Yukawa fluids. Journal of Chemical Physics, 122(4). https://doi.org/10.1063/1.1830433
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