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首页> 外文期刊>ACS applied materials & interfaces >Conceptual Design of Large Surface Area Porous Polymeric Hybrid Media Based on Polyhedral Oligomeric Silsesquioxane Precursors: Preparation, Tailoring of Porous Properties, and Internal Surface Functionalization
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Conceptual Design of Large Surface Area Porous Polymeric Hybrid Media Based on Polyhedral Oligomeric Silsesquioxane Precursors: Preparation, Tailoring of Porous Properties, and Internal Surface Functionalization

机译:基于多面体低聚倍半硅氧烷前体的大表面积多孔聚合物杂化介质的概念设计:多孔性质的制备,定制和内表面功能化

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We report on the preparation of hybrid, organic-inorganic porous materials derived from polyhedral oligomeric vinylsilsesquioxanes (vinylPOSS) via a single-step molding process. The monolithic, large surface area materials are studied with a particular focus on morphology and porous properties. Radical vinyl polymerization of the nanometer-sized POSS building blocks is therefore utilized via a thermally initiated route and in porogenic diluents such as tetrahydroruran and polyethylene glycols of varying composition. Careful choice of these porogenic solvents and proper choice of initiator concentration lead to highly porous monolithic building entities which show a rigid, 3D-adhered, porous structure, macroscopically adapting the shape of a given mold. The described materials reflect Brunauer-Emmett-Teller (BET) surface areas of 700 mVg or more and maximum tunable mesopore volumes of up to 2 cm~3/g. Experimental investigations demonstrate the option to tailor nanoporosity and macroporosity in the single-step free-radical polymerization process. While studies on the influence of the used porogenic solvents reveal tuneability of pore sizes due to the unique pore formation process, tailored existence of residual vinyl groups allows facile postpolymerization modification of the highly porous, large surface area hybrid materials exploited via thiol-ene "click" chemistry. Our developed, simply realizable preparation process explores a new route to derive porous organic-inorganic hybrid adsorbents for a wide variety of applications such as extraction, separation science, and catalysis.
机译:我们报告了通过一步成型工艺从多面体低聚乙烯基倍半硅氧烷(vinylPOSS)衍生的杂化有机-无机多孔材料的制备。对整体式,大表面积材料进行了研究,特别注重形态和多孔性能。因此,纳米级POSS结构单元的自由基乙烯基聚合是通过热引发的途径并在成孔剂中使用的,如成孔剂,如四氢鲁兰和不同组成的聚乙二醇。这些致孔剂的仔细选择和引发剂浓度的适当选择会导致高度多孔的整体式建筑实体,该实体显示出坚固的,3D粘附的多孔结构,从宏观上适应给定模具的形状。所描述的材料反映了700 mVg或更高的Brunauer-Emmett-Teller(BET)表面积,最大可调中孔体积高达2 cm〜3 / g。实验研究表明,可以在一步式自由基聚合过程中定制纳米孔隙度和大孔隙度。虽然对使用的成孔剂的影响的研究表明,由于独特的成孔过程,可调节孔径的大小,但残存乙烯基的定制存在可以对通过硫醇-烯开发的高度多孔,大表面积的杂化材料进行便捷的后聚合改性。化学。我们开发的,易于实现的制备方法探索了一种新的途径,可用于多种应用(例如萃取,分离科学和催化)中获得多孔有机-无机杂化吸附剂。

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