论文标题

中性均聚物混合物中的显微合物分离,由盐掺杂诱导

Microphase separation in neutral homopolymer blends induced by salt-doping

论文作者

Kong, Xian, Qin, Jian

论文摘要

聚合系统中的显微合物分离提供了制造纳米结构的自下而上的策略。据报道要经历微相分离的聚合物通常包括块共聚物或聚电解质。相对易于合成的中性均聚类物被认为是微相分离的能力。在这里,使用最小的模型来解释离子溶剂化的,我们表明,在少量的盐掺杂的情况下,在具有足够的介电对比的中性均聚物混合物中可以分离微相分离。微相分离的驱动力是选择性离子溶剂化之间的竞争,它将较小的离子置于具有较高介电常数的域中,以及局部电荷中立性降低静电能的倾向。折衷是发生微相分离并选择性溶剂化的新兴长度。探索了影响此类竞争的因素,包括离子溶剂化半径,介电对比和聚合物馏分,这指向了实验观察此行为的方向。这些发现提出了一种低成本且容易的替代方法,可以在高级材料设计和制备中利用,以产生微相分离。

Microphase separation in polymeric systems provides a bottom-up strategy to fabricate nanostructures. Polymers that are reported to undergo microphase separation usually include block copolymers or polyelectrolytes. Neutral homopolymers, which are comparatively easy to synthesize, are thought to be incapable of microphase separation. Here, using a minimal model that accounts for ion solvation, we show that microphase separation is possible in neutral homopolymer blends with sufficient dielectric contrast, upon a tiny amount of salt-doping. The driving force for the microphase separation is the competition between selective ion solvation, which places smaller ions in domains with higher dielectric constant, and the propensity for local charge neutrality to decrease the electrostatic energy. The compromise is an emergent length over which microphase separation occurs and ions are selectively solvated. The factors affecting such competitions are explored, including ion solvation radii, dielectric contrast, and polymer fraction, which point to directions for observing this behavior experimentally. These findings suggest a low-cost and facile alternative to produce microphase separation which may be exploited in advanced material design and preparation.

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