Huisman Elisabeth M, Wen Qi, Wang Yu-Hsiu, Cruz Katrina, Kitenbergs Guntars, Erglis Kaspars, Zeltins Andris, Cebers Andrejs, Janmey Paul A
Universiteit Leiden, Instituut-Lorentz, Postbus 9506, NL-2300 RA Leiden, The Netherlands.
Soft Matter. 2011 Aug 21;7(16):7257-7261. doi: 10.1039/C1SM05553D.
Filamentous polyelectrolytes in aqueous solution aggregate into bundles by interactions with multivalent counterions. These effects are well documented by experiment and theory. Theories also predict a gel phase in isotropic rodlike polyelectrolyte solutions caused by multivalent counterion concentrations much lower than those required for filament bundling. We report here the gelation of Pf1 virus, a model semiflexible polyelectrolyte, by the counterions Mg(2+), Mn(2+) and spermine(4+). Gelation can occur at 0.04% Pf1 volume fraction, which is far below the isotropic-nematic transition of 0.7% for Pf1 in monovalent salt. Unlike strongly crosslinked gels of semiflexible polymers, which stiffen at large strains, Pf1 gels reversibly soften at high strain. The onset strain for softening depends on the strength of interaction between counterions and the polyelectrolyte. Simulations show that the elasticity of counterion crosslinked gels is consistent with a model of semiflexible filaments held by weak crosslinks that reversibly rupture at a critical force.
水溶液中的丝状聚电解质通过与多价抗衡离子的相互作用聚集成束。这些效应已被实验和理论充分证明。理论还预测,在各向同性的棒状聚电解质溶液中,当多价抗衡离子浓度远低于丝状聚束所需浓度时会出现凝胶相。我们在此报告了由抗衡离子Mg(2+)、Mn(2+)和精胺(4+)导致的模型半柔性聚电解质Pf1病毒的凝胶化。凝胶化可在0.04%的Pf1体积分数下发生,这远低于Pf1在单价盐中的各向同性 - 向列相转变的0.7%。与半柔性聚合物的强交联凝胶不同,后者在大应变下会变硬,Pf1凝胶在高应变下会可逆地软化。软化的起始应变取决于抗衡离子与聚电解质之间相互作用的强度。模拟表明,抗衡离子交联凝胶的弹性与由弱交联保持的半柔性细丝模型一致,这些弱交联在临界力下会可逆地断裂。