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Precipitation of oppositely charged polyelectrolytes in salt solutions

机译:盐溶液中带相反电荷的聚电解质的沉淀

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We study phase separation in symmetric solutions of weakly charged flexible chains of opposite sign.Precipitation is caused by effective attractions due to charge fluctuations and by short-range attractions between monomers.The contribution from charge fluctuations is computed within the random phase approximation (RPA),which takes into account the connectivity of charges in the polyions.The impenetrability of the ions is accounted for by using a modified Coulomb potential in the RPA.In good solvent conditions the precipitate monotonically swells and eventually dissolves upon addition of salt.However,near the theta-solvent condition,but still in the good solvent,the precipitate can be stable at any salt concentration.Moreover,the density of the precipitate after initial decrease can increase with addition of salt.This effect is a result of redistribution of salt between the precipitate and the supernatant,which is due to an interplay of electrostatic and hardcore interactions.For not too weakly charged polyions the precipitate properties become strongly dependant on temperature even in good solvent conditions.
机译:我们研究具有相反符号的弱电荷柔性链对称溶液中的相分离,沉淀是由电荷波动引起的有效吸引和单体之间的短距离吸引引起的,电荷波动的贡献是在随机相位近似(RPA)中计算的,这考虑到了聚离子中电荷的连通性。通过在RPA中使用改良的库仑电势来说明离子的不可渗透性。在良好的溶剂条件下,沉淀物单调溶胀并最终在添加盐时溶解。在theta溶剂条件下,但仍在良好的溶剂中,沉淀物在任何盐浓度下都可以保持稳定。此外,初始下降后沉淀物的密度会随着盐的添加而增加。这是由于盐之间重新分布所致沉淀物和上清液,这是由于静电和硬核相互作用的相互作用。在弱电荷的聚离子中,即使在良好的溶剂条件下,沉淀物的性质也将严重依赖于温度。

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