论文标题

溶剂诱导的基于甲基丙烯酸酯的块状聚合物聚集体中的形态过渡

Solvent-induced morphological transitions in methacrylate-based block-copolymer aggregates

论文作者

Campos-Villalobos, Gerardo, Siperstein, Flor R., Charles, Arvin, Patti, Alessandro

论文摘要

聚(氧化乙烷) - $ \ textit {b} $ - poly(丁基丙烯酸酯)(peo-$ \ textit {b} $ - pbma)共聚物最近被鉴定为层次合成层次纳米型材料的绝佳基础。然而,尽管实验揭示了形成双连续相和囊泡的潜力,但仍然缺少其相位和聚集行为的一般情况。通过执行分子动力学模拟,我们在这里应用了我们最近的PEO-$ \ textit {B} $ - PBMA的粗粒粒度模型,以调查其在水和四氢呋喃(THF)中的自组装,并揭示了广泛的中间酶的发生。特别是,我们发现该三元系统的形态学相图在高共聚物浓度下融合了双连续和层状相,以及有限尺寸的聚集体,例如分散片或盘状聚集体,球形囊泡和杆状囊泡,在低共聚物浓度下。这些中间相的形态可以通过调整THF/水相对含量来控制,这对自组装的动力学以及所得的平衡结构具有惊人的影响。我们的结果揭示了PEO-$ \ textit {b} $ - PBMA共聚物的迷人潜力,用于模板合成纳米结构材料,并提供了通过准确选择THF/水比来微调其性质的指南。

Poly(ethylene oxide)-$\textit{b}$-poly(butylmethacrylate) (PEO-$\textit{b}$-PBMA) copolymers have recently been identified as excellent building blocks for the synthesis of hierarchical nanoporous materials. Nevertheless, while experiments have unveiled their potential to form bicontinuous phases and vesicles, a general picture of their phase and aggregation behavior is still missing. By performing Molecular Dynamics simulations, we here apply our recent coarse-grained model of PEO-$\textit{b}$-PBMA to investigate its self-assembly in water and tetrahydrofuran (THF) and unveil the occurrence of a wide spectrum of mesophases. In particular, we find that the morphological phase diagram of this ternary system incorporates bicontinuous and lamellar phases at high copolymer concentrations, and finite-size aggregates, such as dispersed sheets or disk-like aggregates, spherical vesicles and rod-like vesicles, at low copolymer concentrations. The morphology of these mesophases can be controlled by tuning the THF/water relative content, which has a striking effect on the kinetics of self-assembly as well as on the resulting equilibrium structures. Our results disclose the fascinating potential of PEO-$\textit{b}$-PBMA copolymers for the templated synthesis of nanostructured materials and offer a guideline to fine-tune their properties by accurately selecting the THF/water ratio.

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