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Biosourced, highly porous, carbon xerogel microspheres

机译:生物感,高度多孔,碳Xerogel微球

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摘要

The first tannin-based carbon xerogel microspheres were prepared and characterised. The materials were synthesised by inverse emulsion polymerisation in sunflower oil, based on the same formulation but using two main independent variables: stirring speed and surfactant amount. The resultant sol-gel spheres were then washed, dried in air, and pyrolysed. The effect of stirring speed and surfactant amount on carbon microsphere size distribution and porous texture was investigated in detail. Depending on the cases, ultramicroporous carbon microspheres with extremely narrow pore size distributions centred at 0.4-0.5 nm, zero mesoporosity, negligible macroporosity and median diameters close to 40 mu m, could be obtained. These characteristics are typical of expensive commercial carbon molecular sieves, whereas the present materials were prepared with cheap and renewable precursors using a very simple method.
机译:制备第一个单宁基碳氧凝胶微球并表征。 基于相同的配方,通过两种主要的独立变量,通过向日葵油中的反乳液聚合来合成材料,但使用两个主要的独立变量:搅拌速度和表面活性剂量。 然后将所得溶胶 - 凝胶球体洗涤,在空气中干燥,并溶解。 详细研究了搅拌速度和表面活性剂量对碳微球尺寸分布和多孔纹理的影响。 根据病例,可以获得以0.4-0.5nm,零中孔隙度,零介孔率为0.4-0.5nm的极窄的孔径分布的多孔碳微球,可以获得近于40μm的零凹陷性,可忽略不计的大摩托度和中值直径。 这些特性是典型的昂贵的商业碳分子筛,而本发明的材料是用廉价和可再生的前体制备使用非常简单的方法制备。

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  • 来源
    《RSC Advances》 |2016年第70期|共11页
  • 作者单位

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour ENSTIB 27 Rue Philippe Seguin CS 60036 F-88026 Epinal France;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour ENSTIB 27 Rue Philippe Seguin CS 60036 F-88026 Epinal France;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour ENSTIB 27 Rue Philippe Seguin CS 60036 F-88026 Epinal France;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour ENSTIB 27 Rue Philippe Seguin CS 60036 F-88026 Epinal France;

    SB RAS Inst Chem &

    Chem Technol 50-24 Akad Gorodok St Krasnoyarsk 660036 Russia;

    Univ Lorraine CNRS UMR 7198 Inst Jean Lamour ENSTIB 27 Rue Philippe Seguin CS 60036 F-88026 Epinal France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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