Sunday Daniel F, Chremos Alexandros, Martin Tyler B, Chang Alice B, Burns Adam B, Grubbs Robert H
Materials Science and Engineering Division, National Institute of Standards and Technology, Gaithersburg, MD 20899, United States.
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, CA 91125, United States.
Macromolecules. 2020;53(16):7132-7140. doi: 10.1021/acs.macromol.0c01181.
Bottlebrush polymers consist of a linear backbone with densely grafted side chains which impact the rigidity of the molecule. The persistence length of the bottlebrush backbone in solution is influenced by both the intrinsic structure of the polymer and by the local environment, such as the solvent quality and concentration. Increasing the concentration reduces the overall size of the molecule due to the reduction in backbone stiffness. In this study we map out the size of a bottlebrush polymer as a function of concentration for a single backbone length. Small-angle neutron scattering (SANS) measurements are conducted on a polynorbornene-based bottlebrush with polystyrene side chains in a good solvent. The data are fit using a model which provides both the long and short axis radius of gyration ( and , respectively), providing a measure for how the conformation changes as a function of concentration. At low concentrations a highly anisotropic structure is observed ( / ≈ 4), becoming more isotropic at higher concentrations ( / ≈ 1.5). The concentration scaling for both and the overall are evaluated and compared with predictions in the literature. Coarse-grained molecular dynamics simulations were also conducted to probe the impact of concentration on bottlebrush conformation showing qualitative agreement with the experimental results.
刷状聚合物由带有密集接枝侧链的线性主链组成,这些侧链会影响分子的刚性。刷状主链在溶液中的持久长度受聚合物的固有结构以及局部环境(如溶剂性质和浓度)的影响。由于主链刚度降低,浓度增加会减小分子的整体尺寸。在本研究中,我们绘制了单一主链长度下刷状聚合物尺寸随浓度变化的关系图。在良溶剂中,对具有聚苯乙烯侧链的聚降冰片烯基刷状聚合物进行了小角中子散射(SANS)测量。使用一个模型对数据进行拟合,该模型可分别提供长轴和短轴的回转半径(分别为 和 ),从而衡量构象如何随浓度变化。在低浓度下观察到高度各向异性的结构( / ≈ 4),在高浓度下变得更加各向同性( / ≈ 1.5)。评估了 和整体 的浓度标度,并与文献中的预测进行了比较。还进行了粗粒化分子动力学模拟,以探究浓度对刷状构象的影响,结果与实验结果在定性上一致。