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Single-Step Fabrication of Polymer Nanocomposite Films

机译:一步一步制备聚合物纳米复合薄膜

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摘要

Polymer nanocomposites are employed in (micro)electronic, biomedical, structural and optical applications. Their fabrication is challenging due to nanoparticle (filler) agglomeration and settling, increased viscosity of blended solutions and multiple tedious processing steps, just to name a few. Often this leads to an upper limit for filler content, requirements for filler–polymer interfacial chemistry and expensive manufacturing. As a result, novel but simple processes for nanocomposite manufacture that overcome such hurdles are needed. Here, a truly single-step procedure for synthesis of polymer nanocomposite films, structures and patterns at high loadings of nanoparticles (for example, >24 vol %) for a variety of compositions is presented. It is highly versatile with respect to rapid preparation of films possessing multiple layers and filler content gradients even on untreated challenging substrates (paper, glass, polymers). Such composites containing homogeneously dispersed nanoparticles even at high loadings can improve the mechanical strength of hydrogels, load-bearing ability of fragile microstructures, gas permeability in thin barriers, performance of dielectrics and device integration in stretchable electronics.
机译:聚合物纳米复合材料用于(微)电子,生物医学,结构和光学应用。由于纳米颗粒(填料)的团聚和沉降,混合溶液的粘度增加以及多个繁琐的加工步骤(仅举几例),它们的制造具有挑战性。通常,这会导致填料含量的上限,对填料-聚合物界面化学的要求以及昂贵的制造成本。结果,需要克服这种障碍的新颖但简单的纳米复合材料制造方法。在此,提出了一种真正的单步程序,用于在纳米粒子的高负载量(例如,> 24 vol%)下合成多种组合物的聚合物纳米复合膜,结构和图案。就快速制备具有多层和填料含量梯度的薄膜而言,即使在未经处理的具有挑战性的基材(纸张,玻璃,聚合物)上,它也具有很高的通用性。这样的即使在高负荷下也包含均匀分散的纳米粒子的复合材料可以改善水凝胶的机械强度,脆弱的微结构的承载能力,薄壁垒中的气体渗透性,电介质性能以及可拉伸电子产品中的器件集成。

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