Key Laboratory for Advanced Materials, Department of Chemistry, East China University of Science & Technology, Shanghai, China.
J Colloid Interface Sci. 2011 Apr 15;356(2):557-65. doi: 10.1016/j.jcis.2011.01.067. Epub 2011 Jan 25.
Two poly(2-(dimethylamino)ethyl methacrylate)-b-poly(acrylic acid) diblock copolymers, PDMAEMA(84)-b-PAA(18) and PDMAEMA(50)-b-PAA(18), were synthesized by the atom transfer radical polymerization (ATRP) and their dual-stimuli responsive behaviors to the changes in temperature and pH in aqueous solutions were investigated by UV-vis spectroscopy, dynamic light scattering (DLS), (1)H NMR spectroscopy and surface tension measurement. Different from PDMAEMA(84)-b-PAA(18) solutions where no aggregation is observed between pH 7.0 and 9.5, the PDMAEMA(50)-b-PAA(18) aggregates can exist in this broad pH range due to the hydrophobic interactions among the charge-balanced polyampholyte chains. At high pH, e.g., 11.0, the DMAEMA segments collapse to form the core of micelles due to the hydrophobic property of the de-protonized DMAEMA stabilized with the highly ionized AA segments on the surface of the micelles upon heating. At pH around the IEP, e.g., 9.5, large micelles can be formed in PDMAEMA(84)-b-PAA(18) solution upon heating, just like that at pH 11.0, while PDMAEMA(50)-b-PAA(18) first formed the micelles due to the electrostatic attraction between ionized AA segments and protonated DMAEMA segments, but the aggregation of the micelles was hardly happened upon heating due to the smaller DMAEMA segment. Moreover, LCST can be exactly estimated by surface tension experiment.
两种聚(2-二甲氨基乙基甲基丙烯酸酯)-b-聚(丙烯酸)两嵌段共聚物 PDMAEMA(84)-b-PAA(18)和 PDMAEMA(50)-b-PAA(18),通过原子转移自由基聚合(ATRP)合成,其水溶液中温度和 pH 值变化的双重刺激响应行为通过紫外可见光谱、动态光散射(DLS)、(1)H NMR 光谱和表面张力测量进行研究。与 PDMAEMA(84)-b-PAA(18)溶液不同,在 pH7.0 和 9.5 之间没有观察到聚集,PDMAEMA(50)-b-PAA(18) 由于平衡聚电解质链之间的疏水相互作用,聚集物可以在这个广泛的 pH 范围内存在。在高 pH 值(例如 11.0)下,由于带负电的 DMAEMA 片段的疏水性,以及在表面带高离子化 AA 片段的带正电的 DMAEMA 稳定,DMAEMA 片段坍缩形成胶束的核。在 pH 接近等电点(例如 9.5)时,PDMAEMA(84)-b-PAA(18)溶液在加热时可以形成大的胶束,就像在 pH11.0 时一样,而 PDMAEMA(50)-b-PAA(18)首先形成胶束是由于离子化 AA 片段和质子化 DMAEMA 片段之间的静电吸引,但由于 DMAEMA 片段较小,胶束的聚集在加热时几乎不会发生。此外,LCST 可以通过表面张力实验准确估计。