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卤化物阴离子对双亲水羧基磺酸甜菜碱嵌段共聚物溶液行为的影响

Effects of Halide Anions on the Solution Behavior of Double Hydrophilic Carboxy-Sulfobetaine Block Copolymers.

作者信息

Lim Jongmin, Matsuoka Hideki, Saruwatari Yoshiyuki

机构信息

Department of Polymer Chemistry, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

Osaka Organic Chemical Industry Ltd., 7-20 Azuchi-machi, 1chome, Chuo-ku, Osaka 541-0052, Japan.

出版信息

Langmuir. 2020 May 19;36(19):5165-5175. doi: 10.1021/acs.langmuir.0c00325. Epub 2020 May 7.

Abstract

The solution behavior of the double polybetaine block copolymer poly(2-((2-(methacryloyloxy)ethyl)dimethylammonio)acetate)--poly(3-((2-(methacryloyloxy)ethyl)dimethylammonio)propane-1-sulfonate (PGLBT--PSPE) in sodium halide aqueous solutions was investigated. In the presence of salt ions, the unimer-to-micelle transition of PGLBT--PSPE that originated by Coulombic attraction between PSPE motifs was suppressed and shifted to much lower temperatures. The transition was hindered more by increases in the salt concentration because of additional counterion binding on the ionized site of PGLBT--PSPE chains, which screens the dipole-dipole attractions. The specific ion effect was investigated on four different halides, Cl, Br, I, and F. Cl and two chaotropes (Br and I) apparently prevented micelle formation, and the hindering effectiveness on the PSPE pairing followed the general Hofmeister series of anions: I > Br > Cl. More chaotropic anions strongly maintained the polymer chains in a fully hydrated state when the same amount of salts was incorporated. However, F, which is classified as a kosmotrope, only made a small contribution to lowering the transition point and led to abrupt transition without showing a gradual phase change prior to the transition. The variations of hydrodynamic radius and zeta potentials of unimers and micelles gave hints of the solvation state of salt-incorporated PGLBT--PSPEs in each state. These results suggest that chaotropic halides tend to exist in the vicinity of the diblock polybetaine chain surface and thus prominently influenced the thermoresponsive solution behavior, whereas kosmotropic F prefers water molecules and causes minor changes in the PGLBT--PSPE aqueous solution.

摘要

研究了双聚甜菜碱嵌段共聚物聚(2-((2-(甲基丙烯酰氧基)乙基)二甲基铵)乙酸酯)-聚(3-((2-(甲基丙烯酰氧基)乙基)二甲基铵)丙烷-1-磺酸盐(PGLBT-PSPE)在卤化钠水溶液中的溶液行为。在盐离子存在下,由PSPE基序之间的库仑引力引发的PGLBT-PSPE从单分子到胶束的转变受到抑制,并转移到更低的温度。由于额外的抗衡离子结合在PGLBT-PSPE链的离子化位点上,屏蔽了偶极-偶极吸引力,盐浓度的增加对转变的阻碍更大。研究了四种不同卤化物Cl、Br、I和F的特定离子效应。Cl以及两种离液剂(Br和I)明显阻止了胶束形成,对PSPE配对的阻碍效果遵循一般的阴离子霍夫迈斯特序列:I>Br>Cl。当加入相同量的盐时,更多的离液阴离子能使聚合物链强烈保持在完全水合状态。然而,被归类为促溶剂的F对降低转变点的贡献很小,并导致突然转变,在转变前没有显示出逐渐的相变。单分子和胶束的流体动力学半径和zeta电位的变化给出了每种状态下掺入盐的PGLBT-PSPE溶剂化状态的线索。这些结果表明,离液卤化物倾向于存在于双嵌段聚甜菜碱链表面附近,从而显著影响热响应溶液行为,而促溶剂F更倾向于水分子,对PGLBT-PSPE水溶液的影响较小。

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