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刺激响应性双性离子两亲分子水凝胶中的结构-性能关系

Structure-property relationship in stimulus-responsive bolaamphiphile hydrogels.

作者信息

Meister Annette, Bastrop Martin, Koschoreck Sven, Garamus Vasil M, Sinemus Thomas, Hempel Günter, Drescher Simon, Dobner Bodo, Richtering Walter, Huber Klaus, Blume Alfred

机构信息

Institute of Chemistry, MLU Halle-Wittenberg, Mühlpforte 1, 06108 Halle, Germany.

出版信息

Langmuir. 2007 Jul 3;23(14):7715-23. doi: 10.1021/la7003479. Epub 2007 Jun 5.

Abstract

The formation of temperature-, concentration-, and pH-responsive hydrogels composed of the symmetric long-chain bolaamphiphile dotriacontane-1,1'-diyl bis[[2-(dimethylammonio)ethyl]phosphate] (Me(2)PE-C32-Me(2)PE) was investigated by rheological, scattering, and spectroscopic techniques. At pH 5, this bolaamphiphile is known to form a dense network of helically structured nanofibers (Köhler et al. Soft Matter 2006, 2, 77-86). Rheological measurements and dynamic light scattering were used to describe the macroscopic behavior of the hydrogels. Small-angle neutron scattering (SANS) and time-resolved static light scattering were applied to get information about the morphology of the self-assembled aggregates. Finally, solid-state 31P NMR spectroscopy was used to gain insight into the mobility of the bolaamphiphile molecules within the fiber aggregates. In comparison with the previously examined trimethylammonio analogue PC-C32-PC, which forms temperature-dependent hydrogels, Me(2)PE-C32-Me(2)PE exhibits additional concentration- and pH-dependent gelling properties. The significantly higher stability of the Me(2)PE-C32-Me(2)PE hydrogel is supported by the SANS data, which indicate the presence of fiber aggregates up to 50 degrees C.

摘要

通过流变学、散射和光谱技术研究了由对称长链双亲性分子三十二烷-1,1'-二基双[2-(二甲基铵基)乙基]磷酸酯组成的温度、浓度和pH响应水凝胶的形成。在pH 5时,已知这种双亲性分子会形成由螺旋结构纳米纤维组成的致密网络(Köhler等人,《软物质》,2006年,2卷,77 - 86页)。流变学测量和动态光散射用于描述水凝胶的宏观行为。小角中子散射(SANS)和时间分辨静态光散射用于获取有关自组装聚集体形态的信息。最后,固态31P NMR光谱用于深入了解双亲性分子在纤维聚集体中的流动性。与之前研究的形成温度依赖性水凝胶的三甲基铵类似物PC-C32-PC相比,Me(2)PE-C32-Me(2)PE表现出额外的浓度和pH依赖性凝胶化特性。SANS数据支持了Me(2)PE-C32-Me(2)PE水凝胶显著更高的稳定性,该数据表明在高达50摄氏度时存在纤维聚集体。

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