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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Interface Counterion Localization Induces a Switch between Tight and Loose Configurations of Knotted Weak Polyacid Rings despite Intermonomer Coulomb Repulsions
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Interface Counterion Localization Induces a Switch between Tight and Loose Configurations of Knotted Weak Polyacid Rings despite Intermonomer Coulomb Repulsions

机译:界面抗衡离子定位虽然是双式组合的库仑排斥,但仍然会在紧密和松散的配置之间引起交换机之间的开关

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Stochastic simulations have been used to investigate the conformational behavior of knotted weak polyacid rings as a function of pH. Different from the commonly expected ionization-repulsion-expansion scheme upon increasing pH, theoretical results suggest a nonmonotonic behavior of the gyration radius R-g(2). Polyelectrolyte recontraction at high ionization is induced by the weakening of Coulomb repulsion due to counterions (CIs) localizing at the interphase between the polymer and solvent, and the more marked it appears, the more complex is the knot topology. Compared with strong polyelectrolytic species of identical ionization, weak polyacids present tighter knots due to their ability to localize neutral monomers inside the tangled part. Increasing the solvent Bjerrum length enhances CIs localization, lowering the pH at which polyacids start decreasing their average size. A similar effect is also obtained by increasing the amount of "localizable" cations by adding salts.
机译:随机仿真已被用于研究作为pH的函数的打结弱多酸环的构象行为。 与常见预期的电离排斥 - 膨胀方案不同,在增加pH时,理论结果表明循环半径R-G(2)的非单调行为。 通过在聚合物和溶剂之间的相互间隔的抗衡离子(顺式)的抗衡离子(顺式)削弱的高电离中的聚电解质重新诱导诱导,并且出现的更标记,更复杂是结拓扑。 与相同电离的强聚电解种相比,由于它们在缠结部分内部化中性单体的能力,弱多酸呈较小的结。 增加溶剂Bjerrum长度增强了顺式定位,降低了多酸开始降低其平均尺寸的pH值。 还通过增加盐来增加“可定位”阳离子的“可定位”阳离子的量来获得类似的效果。

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