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具有可折叠聚(N-异丙基丙烯酰胺)头基的温度和pH响应性胶束。

Temperature- and pH-responsive micelles with collapsible poly(N-isopropylacrylamide) headgroups.

作者信息

FitzGerald Paul A, Gupta Sushen, Wood Kathleen, Perrier Sébastien, Warr Gregory G

机构信息

The School of Chemistry, Building F11, The University of Sydney , Sydney, NSW 2006, Australia.

出版信息

Langmuir. 2014 Jul 15;30(27):7986-92. doi: 10.1021/la501861t. Epub 2014 Jul 1.

Abstract

We have studied the micelle formation and phase behavior of a series of temperature- and pH-responsive surfactants prepared by controlled radical (RAFT) polymerization. These C12NIPAMm surfactants consist of a dodecyl tail, a poly(N-isopropylacrylamide) (polyNIPAM) headgroup with average degrees of polymerization of between 7 and 96, and an ionizable carboxylate group. In the un-ionized state, these surfactants phase separate on warming toward a lower critical solution temperature (LCST), which decreases as the length of the NIPAM group is decreased. This is in agreement with the behavior of conventional nonionic poly(ethylene oxide)-based surfactants but is very different from that of polyNIPAM oligomer solutions. Small angle neutron scattering (SANS) shows that these surfactants self-assemble into micelles consisting of a nearly spherical hydrophobic core surrounded by a "hairy" polyNIPAM shell far below their LCST. Upon warming, the micelles undergo a sphere-to-rod transition induced by the collapse of the polyNIPAM shell, causing a reduction in the headgroup area. In the un-ionized state the demixing follows at the LCST, but a single charge on the free polymer end completely suppresses phase separation, allowing micelles to undergo a shape change but remain dissolved.

摘要

我们研究了通过可控自由基(RAFT)聚合制备的一系列温度和pH响应型表面活性剂的胶束形成和相行为。这些C12NIPAMm表面活性剂由一个十二烷基尾链、一个平均聚合度在7至96之间的聚(N-异丙基丙烯酰胺)(聚NIPAM)头基以及一个可电离的羧酸盐基团组成。在未电离状态下,这些表面活性剂在升温至较低临界溶液温度(LCST)时会发生相分离,随着NIPAM基团长度的减小,LCST会降低。这与传统的基于聚环氧乙烷的非离子表面活性剂的行为一致,但与聚NIPAM低聚物溶液的行为有很大不同。小角中子散射(SANS)表明,这些表面活性剂在远低于其LCST的温度下自组装成胶束,胶束由一个近乎球形的疏水核和一个被“毛茸茸”的聚NIPAM壳包围组成。升温时,由于聚NIPAM壳的塌陷,胶束会发生从球形到棒状的转变,导致头基面积减小。在未电离状态下,相分离在LCST时发生,但游离聚合物末端的单个电荷会完全抑制相分离,使胶束能够发生形状变化但仍保持溶解状态。

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