首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Electrostatic Free Energy of Weakly Charged Macromolecules in Solution and Intermacromolecular Complexes Consisting of Oppositely Charged Polymers
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Electrostatic Free Energy of Weakly Charged Macromolecules in Solution and Intermacromolecular Complexes Consisting of Oppositely Charged Polymers

机译:弱电荷高分子在相反电荷聚合物组成的溶液和大分子间复合物中的静电自由能

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When oppositely charged polyelectrolytes are mixed in water,attraction between oppositely charged groups may lead to the formation of polyelectrolyte complexes (associative phase separation,complex coacervation,interpolymer complexes).Theory is presented to describe the electrostatic free energy change when ionizable (annealed)(macro-)molecules form a macroscopic polyelectrolyte complex.The electrostatic free energy includes an electric term as well as a chemical term that is related to the dissociation of the ionic groups in the polymer.An example calculation for complexation of polyacid with polybase uses a cylindrical diffuse double layer model for free polymer in solution and electroneutrality within the complex and calculates the free energy of the system when the polymer is in solution or in a polyelectrolyte complex.Combined with a term for the nonelectrostatic free energy change upon complexation,a theoretical stability diagram is constructed that relates pH,salt concentration,and mixing ratio,which is in qualitative agreement with an experimental diagram obtained by Bungenberg de Jong (1949)for complex coacervation of arabic gum and gelatin.The theory furthermore explains the increased tendency toward phase separation when the polymer becomes more strongly charged and suggests that complexation of polyacid or polybase with zwitterionic polymer (e.g.,protein)of the same charge sign (at the "wrong side"of the iso-electric point)may be due (in part)to an induced charge reversal of the protein.
机译:当在水中混合带相反电荷的聚电解质时,带相反电荷的基团之间的吸引力可能导致聚电解质络合物的形成(缔合相分离,络合物凝聚,互聚物络合物)。提出了理论来描述可电离(退火)时的静电自由能变化(大分子形成宏观的聚电解质配合物。静电自由能包括一个电子项以及一个与聚合物中离子基团解离有关的化学项。溶液中的游离聚合物和配合物中的电子中性的扩散双层模型,并计算聚合物在溶液中或在聚电解质配合物中时系统的自由能。结合非复合作用下非静电自由能的变化项,具有理论稳定性绘制了与pH,盐浓度相关的图表,和混合比,与Bungenberg de Jong(1949)获得的阿拉伯胶和明胶的复合凝聚实验图在质量上吻合。该理论进一步解释了当聚合物带更多电时,相分离的趋势会增加,并表明多元酸或多元碱与具有相同电荷符号(在等电点的“错误侧”)的两性离子聚合物(例如蛋白质)的络合(部分)是由于蛋白质的诱导电荷反转。

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