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Chemical removal of organic polymers from highly porous sol-gel-derived silica monoliths

机译:从高度多孔的溶胶-凝胶衍生的二氧化硅整体物中化学去除有机聚合物

摘要

[[abstract]]A new method for the removal of the organic polymer poly(ethylene glycol) (PEG) from silica monoliths exhibiting a hierarchical, bimodal porosity is described. The method is based on post-synthesis treatment with sulfuric acid and does not necessarily require calcination of the monoliths. This procedure preserves the mechanical integrity of the highly porous monoliths. Furthermore, it can be applied to remove PEG from one-pot-synthesized monoliths bearing organic functional groups that would not withstand high-temperature treatments but could survive in acidic conditions. The sulfuric acid treatment also results in less shrinkage than does calcination, which is related to an increase in the degree of silica condensation during the treatment. This could allow the removal of organic polymers to be carried out in the final monolith carrier, and hence reduce the number of steps needed for the fabrication of silica monoliths as HPLC columns, catalyst supports, etc. Furthermore, silica monoliths treated with sulfuric acid have larger amounts of surface silanol groups than calcined monoliths. They also show a higher degree of surface functionalization with functional silanes than calcined samples under the same reaction conditions.
机译:[摘要]描述了一种从具有整体性,双峰孔隙度的二氧化硅整料中除去有机聚合物聚(乙二醇)(PEG)的新方法。该方法基于硫酸的合成后处理,并不一定需要煅烧整料。该过程保留了高度多孔整料的机械完整性。此外,它可用于从一锅合成的带有有机官能团的整体式反应器中除去PEG,该整体式反应器不能承受高温处理,但可以在酸性条件下存活。硫酸处理还导致收缩率低于煅烧,这与处理过程中二氧化硅缩合度的增加有关。这可以允许在最终的整体式载体中进行有机聚合物的去除,从而减少了制备作为HPLC色谱柱,催化剂载体等的二氧化硅整体所需的步骤。此外,用硫酸处理过的二氧化硅整体具有比煅烧的整料更大数量的表面硅烷醇基团。与在相同反应条件下煅烧的样品相比,它们还具有更高的官能化硅烷表面官能化程度。

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  • 作者

    Yang CM;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 [[iso]]en
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