Raftopoulos Konstantinos N, Kyriakos Konstantinos, Nuber Matthias, Niebuur Bart-Jan, Holderer Olaf, Ohl Michael, Ivanova Oxana, Pasini Stefano, Papadakis Christine M
Technische Universität München, Physik-Department, Fachgebiet Physik weicher Materie, James-Franck-Str. 1, 85748 Garching, Germany.
Jülich Centre for Neutron Science at Heinz Maier-Leibnitz Zentrum (MLZ), Forschungszentrum Jülich GmbH, Lichtenbergstr. 1, 85747 Garching, Germany.
Soft Matter. 2020 Sep 23;16(36):8462-8472. doi: 10.1039/d0sm01007c.
The polymer dynamics in concentrated solutions of poly(N-isopropyl acrylamide) (PNIPAM) in D2O/CD3OD mixtures is investigated in the one-phase region. Two polymer concentrations (9 and 25 wt%) and CD3OD contents in the solvent mixture of 0, 10 and 15 vol% are chosen. Temperature-resolved dynamic light scattering (DLS) reveals the collective dynamics. Two modes are observed, namely the fast relaxation of polymer segments within the blobs and the slow collective relaxation of the blobs. As the cloud point is approached, the correlation length related to the fast mode increases with CD3OD content. It features critical scaling behavior, which is consistent with mean-field behavior for the 9 wt% PNIPAM solution in pure D2O and with 3D Ising behavior for all other solutions. While the slow mode is not very strong in the 9 wt% PNIPAM solution in pure D2O, it is significantly more prominent as CD3OD is added and at all CD3OD contents in the 25 wt% solution, which may be attributed to enhanced interaction between the polymers. Neutron spin-echo spectroscopy (NSE) reveals a decay in the intermediate structure factor which indicates a diffusive process. For the polymer concentration of 9 wt%, the diffusion coefficients from NSE are similar to the ones from the fast relaxation observed in DLS. In contrast, they are significantly lower for the solutions having a polymer concentration of 25 wt%, which is attributed to the influence of the dominant large-scale dynamic heterogeneities. To summarize, addition of cosolvent leads to enhanced large-scale heterogeneities, which are reflected in the dynamic behavior at small length scales.
在单相区域研究了聚(N-异丙基丙烯酰胺)(PNIPAM)在D2O/CD3OD混合物浓溶液中的聚合物动力学。选择了两种聚合物浓度(9 wt%和25 wt%)以及溶剂混合物中CD3OD含量为0、10和15 vol%的情况。温度分辨动态光散射(DLS)揭示了集体动力学。观察到两种模式,即聚合物链段在团簇内的快速弛豫和团簇的缓慢集体弛豫。随着接近浊点,与快速模式相关的相关长度随CD3OD含量增加。它具有临界标度行为,这与纯D2O中9 wt% PNIPAM溶液的平均场行为以及所有其他溶液的三维伊辛行为一致。虽然在纯D2O中9 wt% PNIPAM溶液中慢模式不是很强,但随着添加CD3OD以及在25 wt%溶液的所有CD3OD含量下,它明显更突出,这可能归因于聚合物之间相互作用的增强。中子自旋回波光谱(NSE)揭示了中间结构因子的衰减,这表明了一个扩散过程。对于9 wt%的聚合物浓度,NSE得到的扩散系数与DLS中观察到的快速弛豫的扩散系数相似。相比之下,对于聚合物浓度为25 wt%的溶液,它们显著更低,这归因于占主导地位的大规模动态不均匀性的影响。总之,加入共溶剂导致大规模不均匀性增强,这反映在小长度尺度的动态行为中。