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首页> 外文期刊>ChemSusChem >Metal-free and Scalable Synthesis of Porous Hyper-cross-linked Polymers: Towards Applications in Liquid-Phase Adsorption
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Metal-free and Scalable Synthesis of Porous Hyper-cross-linked Polymers: Towards Applications in Liquid-Phase Adsorption

机译:无孔超交联聚合物的无金属和可扩展合成:朝向液相吸附中的应用

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摘要

A metal-free route for the synthesis of hyper-cross-linked polymers (HCP) based on BrOnsted acids such as trifluoromethanesulfonic acid as well as H2SO4 is reported. It is an improved method compared to conventional synthesis strategies that use stoichiometric amounts of metal-based Lewis acids such as FeCl3. The resulting high-performance adsorbents exhibit a permanent porosity with high specific surface areas up to 1842m(2)g(-1). Easy scalability of the HCP synthesis is proven on the multi-gram scale. All chemo-physical properties are preserved. Water-vapor adsorption shows that the resulting materials exhibit an even more pronounced hydrophobicity compared to the conventionally prepared materials. The reduced surface polarity enhances the selectivity in the liquid-phase adsorption of the biogenic platform chemical 5-hydroxymethylfurfural.
机译:据报道,基于支架酸如三氟甲磺酸和H 2 SO 4,为合成超交联聚合物(HCP)的无金属途径。 与使用化学计量的金属基Lewis酸如FECL3的常规合成策略相比,这是一种改进的方法。 得到的高性能吸附剂具有高达1842m(2 )g(-1)的高比表面积的永久性孔隙率。 在多克尺度上证明了HCP合成的简单可扩展性。 所有化疗物理性质都保存。 水蒸气吸附表明,与常规制备的材料相比,所得材料表现出更明显的疏水性。 降低的表面极性增强了生物学平台化学5-羟甲基糠醛的液相吸附中的选择性。

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