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Aqueous Graphene Dispersions-Optical Properties and Stimuli-Responsive Phase Transfer

机译:石墨烯水分散体-光学性质和刺激响应相转移

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We demonstrate essentially complete exfoliation of graphene aggregates in water at concentrations up to 5% by weight (166-fold greater than previous high concentration report) using recently developed triblock copolymers and copolymeric nanolatexes based on a reactive ionic liquid acrylate surfactant. We demonstrate that the visible absorption coefficient in aqueous dispersion, 48.9 +/- 1.3 cm(2)/mg at 500 nm, is about twice that currently accepted, and we show that this value is a greatest lower bound to extant macroscopic single sheet optical studies of graphene when one considers both fine structure constant and excitonic mechanisms of visible absorption. We also show that dilute and concentrated graphene dispersions are rheo-optical fluids that exhibit an isotropic to nematic transition upon application of a shear field, and we demonstrate stimuli-responsive phase transfer.
机译:我们使用最近开发的基于反应性离子液体丙烯酸酯表面活性剂的三嵌段共聚物和共聚纳米乳胶,证明了石墨烯聚集体在水中的完全完全剥落,其浓度最高可达5%重量(比以前的高浓度报告大166倍)。我们证明了在水分散体中的可见吸收系数,在500 nm处为48.9 +/- 1.3 cm(2)/ mg,约为目前接受的吸收系数的两倍,并且我们表明该值是现存的宏观单片光学器件的最大下限当人们同时考虑精细结构常数和可见光吸收的激子机制时,对石墨烯进行了研究。我们还显示出稀和浓的石墨烯分散体是流变光学流体,在施加剪切场后表现出各向同性向列相变,并且证明了刺激响应相转移。

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