Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
Soft Matter. 2019 Apr 3;15(14):2928-2941. doi: 10.1039/c9sm00033j.
Bottlebrush polymers are a class of macromolecules that have recently found use in a wide variety of materials, ranging from lubricating brushes and nanostructured coatings to elastomeric gels that exhibit structural colors. These polymers are characterized by dense branches extending from a central backbone and thus have properties distinct from linear polymers. It remains a challenge to specifically understand conformational properties of these molecules, due to the wide range of architectural parameters that can be present in a system, and thus there is a need to accurately characterize and model these molecules. In this paper, we use a combination of viscometry, light scattering, and computer simulations to gain insight into the conformational properties of dilute solution bottlebrush polymers. We focus on a series of model bottlebrushes consisting of a poly(norbornene) (PNB) backbone with poly(lactic acid) (PLA) side chains. We demonstrate that intrinsic viscosity and hydrodynamic radius are experimental observations sensitive to molecular architecture, exhibiting distinct differences with different choices of branches and backbone lengths. Informed by the atomistic structure of this PNB-PLA system, we rationalize a coarse-grained simulation model that we evaluate using a combination of Brownian dynamics and Monte Carlo simulations. We show that this exhibits quantitative matching to experimental results, enabling us to characterize the overall shape of the bottlebrush via a number of metrics that can be extended to more general bottlebrush architectures.
刷型聚合物是一类大分子,最近在各种材料中得到了广泛应用,从润滑刷和纳米结构涂层到具有结构色的弹性凝胶。这些聚合物的特点是从中心主链延伸出密集的支链,因此具有不同于线性聚合物的性质。由于系统中可能存在广泛的结构参数,因此要准确地描述和模拟这些分子,具体了解这些分子的构象性质仍然是一个挑战。在本文中,我们使用粘度法、光散射和计算机模拟相结合的方法,深入研究了稀溶液刷型聚合物的构象性质。我们专注于一系列由聚降冰片烯(PNB)主链和聚乳酸(PLA)侧链组成的模型刷型聚合物。我们证明了特性粘度和流体力学半径是对分子结构敏感的实验观察,不同的支链和主链长度选择会表现出明显的差异。根据该 PNB-PLA 体系的原子结构,我们提出了一个粗粒化模拟模型,并使用布朗动力学和蒙特卡罗模拟相结合的方法对其进行了评估。我们表明,该模型与实验结果具有定量匹配,使我们能够通过一些可以扩展到更一般的刷型结构的度量来描述刷型聚合物的整体形状。