首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Preparation of Hydrophobic Metal-Organic Frameworks via Plasma Enhanced Chemical Vapor Deposition of Perfluoroalkanes for the Removal of Ammonia
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Preparation of Hydrophobic Metal-Organic Frameworks via Plasma Enhanced Chemical Vapor Deposition of Perfluoroalkanes for the Removal of Ammonia

机译:通过等离子增强全氟烷烃的化学气相沉积去除氨气制备疏水性金属有机骨架

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摘要

Plasma enhanced chemical vapor deposition (PECVD) of perfluoroalkanes has long been studied for tuning the wetting properties of surfaces. For high surface area microporous materials, such as metal-organic frameworks (MOFs), unique challenges present themselves for PECVD treatments. Herein the protocol for development of a MOF that was previously unstable to humid conditions is presented. The protocol describes the synthesis of Cu-BTC (also known as HKUST-1), the treatment of Cu-BTC with PECVD of perfluoroalkanes, the aging of materials under humid conditions, and the subsequent ammonia microbreakthrough experiments on milligram quantities of microporous materials. Cu-BTC has an extremely high surface area (~1,800 m2/g) when compared to most materials or surfaces that have been previously treated by PECVD methods. Parameters such as chamber pressure and treatment time are extremely important to ensure the perfluoroalkane plasma penetrates to and reacts with the inner MOF surfaces. Furthermore, the protocol for ammonia microbreakthrough experiments set forth here can be utilized for a variety of test gases and microporous materials.
机译:长期以来,全氟烷烃的等离子体增强化学气相沉积(PECVD)用于调节表面的润湿性能。对于高表面积的微孔材料,例如金属有机骨架(MOF),PECVD处理面临着独特的挑战。本文介绍了开发MOF的协议,该协议以前对潮湿条件不稳定。该协议描述了Cu-BTC(也称为HKUST-1)的合成,用全氟烷烃的PECVD处理Cu-BTC,在潮湿条件下老化的材料以及随后对毫克量的微孔材料进行氨气微突破实验。与大多数先前通过PECVD方法处理过的材料或表面相比,Cu-BTC具有极高的表面积(〜1,800 m 2 / g)。腔室压力和处理时间等参数对于确保全氟烷烃等离子体渗透到内部MOF表面并与之反应至关重要。此外,此处阐述的氨气微突破实验方案可用于多种测试气体和微孔材料。

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