Nieswandt Katharina, Georgopanos Prokopios, Held Martin, Sperling Evgeni, Abetz Volker
Helmholtz-Zentrum Hereon, Institute of Membrane Research, Max-Planck-Straße 1, 21502 Geesthacht, Germany.
Institute of Physical Chemistry, University of Hamburg, Martin-Luther-King-Platz 6, 20146 Hamburg, Germany.
Polymers (Basel). 2021 Dec 24;14(1):62. doi: 10.3390/polym14010062.
Thermoresponsive poly((-dimethyl acrylamide)--(-isopropyl acrylamide)) (P(DMA--NIPAM)) copolymers were synthesized via reversible addition-fragmentation chain transfer (RAFT) polymerization. The monomer reactivity ratios were determined by the Kelen-Tüdős method to be = 0.83 and = 1.10. The thermoresponsive properties of these copo-lymers with varying molecular weights were characterized by visual turbidimetry and dynamic light scattering (DLS). The copolymers showed a lower critical solution temperature (LCST) in water with a dependence on the molar fraction of DMA in the copolymer. Chaotropic and kosmotropic salt anions of the Hofmeister series, known to affect the LCST of thermoresponsive polymers, were used as additives in the aqueous copolymer solutions and their influence on the LCST was demonstrated. Further on, in order to investigate the thermoresponsive behavior of P(DMA--NIPAM) in a confined state, P(DMA--NIPAM)--PS diblock copolymers were prepared via polymerization induced self-assembly (PISA) through surfactant-free RAFT mediated emulsion polymerization of styrene using P(DMA--NIPAM) as the macromolecular chain transfer agent (mCTA) of the polymerization. As confirmed by cryogenic transmission electron microscopy (cryoTEM), this approach yielded stabilized spherical micelles in aqueous dispersions where the PS block formed the hydrophobic core and the P(DMA--NIPAM) block formed the hydrophilic corona of the spherical micelle. The temperature-dependent behavior of the LCST-type diblock copolymers was further studied by examining the collapse of the P(DMA--NIPAM) minor block of the P(DMA--NIPAM)--PS diblock copolymers as a function of temperature in aqueous solution. The nanospheres were found to be thermosensitive by changing their hydrodynamic radii almost linearly as a function of temperature between 25 °C and 45 °C. The addition of kosmotropic salt anions, as a potentially useful tuning feature of micellar assemblies, was found to increase the hydrodynamic radius of the micelles and resulted in a faster collapse of the micelle corona upon heating.
通过可逆加成-断裂链转移(RAFT)聚合反应合成了热响应性聚(N,N-二甲基丙烯酰胺-co-N-异丙基丙烯酰胺)(P(DMA-co-NIPAM))共聚物。采用Kelen-Tüdős方法测定单体竞聚率,r1 = 0.83,r2 = 1.10。通过目测比浊法和动态光散射(DLS)对这些不同分子量共聚物的热响应性能进行了表征。共聚物在水中表现出较低临界溶液温度(LCST),且依赖于共聚物中DMA的摩尔分数。已知影响热响应性聚合物LCST的霍夫迈斯特系列离液序列高的盐阴离子和离液序列低的盐阴离子被用作共聚物水溶液中的添加剂,并证明了它们对LCST的影响。此外,为了研究P(DMA-co-NIPAM)在受限状态下的热响应行为,以P(DMA-co-NIPAM)为苯乙烯无表面活性剂RAFT介导乳液聚合的大分子链转移剂(mCTA)通过聚合诱导自组装(PISA)制备了P(DMA-co-NIPAM)-b-PS二嵌段共聚物。低温透射电子显微镜(cryoTEM)证实,该方法在水性分散体中产生了稳定的球形胶束,其中PS嵌段形成疏水核,P(DMA-co-NIPAM)嵌段形成球形胶束的亲水冠。通过研究P(DMA-co-NIPAM)-b-PS二嵌段共聚物中P(DMA-co-NIPAM)次要嵌段在水溶液中随温度的塌缩,进一步研究了LCST型二嵌段共聚物的温度依赖性行为。发现纳米球具有热敏性,在25℃至45℃之间,其流体力学半径几乎随温度呈线性变化。离液序列低的盐阴离子的加入作为胶束组装的一种潜在有用的调节特性,被发现会增加胶束的流体力学半径,并导致加热时胶束冠更快塌缩。