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Effect of the concentration on sol-gel transition of telechelic polyelectrolytes

机译:浓度对远螯聚电解质的溶胶-凝胶转变的影响

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摘要

Telechelic polyelectrolytes, bearing short hydrophobic blocks at both ends, will ionize into polyions and their counterions when dissolved in water. With the variation of concentration, the interplay between short range attraction and the long range electrostatic interaction as well as the counterion distribution exerts a major influence on the chain conformations (two basic conformations: loop and nonloop, the latter can be subdivided into three association types: free, dangling, and bridge), the cluster structure and the forming of a physical gel. For weak hydrophobic interaction, the relative strong electrostatic interaction dominates the gelation progress; sol-gel transition occurs at higher concentrations due to electrostatic screening and mainly involves the forming of stretched nonloop conformations such as dangling and bridge. While for strong hydrophobic interaction, the hydrophobic interaction dominates and the electrostatic interaction provides a contribution to the formation of gels by maintaining a spatial swelling structure, resulting in a much lower concentration region of sol-gel transition; besides, the sol-gel transition is characterized by the competition of the forming of loop and bridge chains.
机译:远螯聚电解质,两端带有短的疏水性嵌段,当溶于水时会离子化成聚离子及其抗衡离子。随着浓度的变化,短距离吸引与长距离静电相互作用之间的相互作用以及抗衡离子的分布对链构象(两个基本构象:环状和非环状,后者可细分为三种缔合类型)产生重大影响:自由,悬挂和桥接),簇结构和物理凝胶的形成。对于弱疏水相互作用,相对强的静电相互作用主导着胶凝过程。由于静电筛选,溶胶-凝胶转变会在较高浓度下发生,并且主要涉及拉伸的非环构象的形成,例如悬空和桥接。对于强疏水相互作用,疏水相互作用起主导作用,而静电相互作用则通过维持空间溶胀结构而为凝胶的形成做出贡献,从而导致溶胶-凝胶转变的浓度区域低得多;此外,溶胶-凝胶转变的特征在于环和桥链形成的竞争。

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