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Hierarchical silica monolith prepared using cellulose monolith as template

机译:使用纤维素整料制备的分层二氧化硅甲型料理作为模板

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Silica monoliths with a continuous porous structure have received much attention in biomedical and environmental applications owing to their high-performance separation/adsorption behaviors. However, it is difficult to maintain a porous structure in silica monoliths because their synthesis often involves complicated phase separation in sol-gel reactions. Herein, for the first time, we used an ecofriendly cellulose material as a template to prepare a hydrophilic and hierarchically porous silica monolith. The cellulose monolith template was prepared from cellulose acetate by a thermally induced phase separation method. The silica was then prepared in the presence of the cellulose monolith by a typical sol-gel reaction of tetraethyl orthosilicate (TEOS) to form the composite monolith, which was converted to the silica monolith by burning in air to remove the cellulose monolith. Owing to the hierarchically porous structure of the cellulose monolith template, the obtained silica monolith showed a similar hierarchically porous structure, as confirmed by scanning electron microscopy and nitrogen adsorption-desorption analyses. The pore structure could be controlled by changing the fabrication parameters, such as the kind of cellulose monolith and TEOS concentration. The surface-modified silica monolith was developed for further applications.
机译:由于其高性能分离/吸附行为,具有连续多孔结构的二氧化硅巨石在生物医学和环境应用中得到了很多关注。然而,难以在二氧化硅整料中保持多孔结构,因为它们的合成通常涉及在溶胶 - 凝胶反应中的复杂相分离。在此,我们首次使用Ecofriendly纤维素材料作为模板以制备亲水和分层多孔二氧化硅整料。通过热诱导的相分离方法由醋酸纤维素制备纤维素整体模板。然后通过四乙基硅酸盐(TEOS)的典型溶胶 - 凝胶反应在纤维素整料存在下制备二氧化硅,以形成复合整料,通过在空气中燃烧以除去纤维素整料,将其转化为二氧化硅整料。由于纤维素整料模板的分层散射结构,所得二氧化硅整料显示出类似的分层多孔结构,通过扫描电子显微镜和氮吸附 - 解吸分析证实。可以通过改变制造参数来控制孔结构,例如纤维素整料和TEOS浓度的种类。表面改性的二氧化硅整料是用于进一步应用的。

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