首页> 外文期刊>The Journal of Supercritical Fluids >Supercritical CO2 based processing of amorphous fluoropolymer Teflon-AF: Surfactant-free dispersions and superhydrophobic films
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Supercritical CO2 based processing of amorphous fluoropolymer Teflon-AF: Surfactant-free dispersions and superhydrophobic films

机译:基于超临界CO2的无定形含氟聚合物Teflon-AF的处理:无表面活性剂分散体和超疏水性薄膜

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摘要

We report the application of a modified RESS process to create and collect in high yield nanoparticles of an amorphous fluoropolymer, Teflon-AFl 600. The nanoparticles with diameters ranging from 10 to 100 nm can be synthesized from polymer solutions in supercritical CO2 at 300 bar and 60 °C. The nanoparticles are collected by formation of dry ice in a liquid nitrogen-cooled trap. Nanoparticles embedded in dry-ice can be dispersed in organic solvents (acetone, ethanol, and n-heptane) creating surfactant-free dispersions. When dispersed in water, the nanoparticles self-assemble at the air-water interface forming a mechanically robust, superhydrophobic film. The film can support large water droplets (up to volume 250 μL) without breaking and is impermeable to water. The films cast from dispersions as well as those lifted-off water surface, are highly porous and superhydrophobic in nature (water contact angle θ_(adv) = 162°). This work demonstrates the utility of supercritical fluids based processing of fluoropolymers.
机译:我们报道了一种改良的RESS工艺的应用,该工艺可用于生产和收集高产率的无定形氟聚合物Teflon-AF1 600纳米颗粒。直径范围为10至100 nm的纳米颗粒可以由聚合物溶液在300 bar的超临界CO2中合成。 60°C。通过在液氮冷却的阱中形成干冰来收集纳米颗粒。嵌入在干冰中的纳米颗粒可以分散在有机溶剂(丙酮,乙醇和正庚烷)中,从而形成不含表面活性剂的分散体。当分散在水中时,纳米颗粒在空气-水界面处自组装,形成机械坚固的超疏水膜。薄膜可以支撑大水滴(最大体积为250μL)而不会破裂,并且不透水。由分散体和剥离的水表面流延的薄膜具有高度的多孔性和超疏水性(水接触角θ_(adv)= 162°)。这项工作证明了基于超临界流体的含氟聚合物加工的实用性。

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