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首页> 外文期刊>Journal of Materials Science >Ordered mesoporous silica fibers: Effects of synthesis conditions on fiber morphology and length
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Ordered mesoporous silica fibers: Effects of synthesis conditions on fiber morphology and length

机译:有序介孔二氧化硅纤维:合成条件对纤维形态和长度的影响

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Ordered mesoporous silica fibers offer potential industrial application in several areas including polymerization catalysis and separation. Understanding the effects of synthesis conditions on these fibers prepared by the interfacial self-assembly growth method is important to their production and application. The focus of this work is to understand the effect of two previously unstudied factors: silica source height (tetrabutylorthosilicate, TBOS) and the humidity, on the formation of ordered mesoporous silica fibers by the interfacial self-assembly method. Here the TBOS content, interface area, height of source, and humidity of the environment were varied to study their effect on fiber growth. The results show that the TBOS content and interface area do not have a significant impact on results of ordered mesoporous silica fibers. Increasing silica source height or environmental humidity, which lowers the water evaporation rate, gives silica fibers with lower length, less ordered inner pore structure and macroscopic morphology, and smaller pore size. Attempts to mix the growth medium eliminate the fiber morphology and yield gyroidal shapes. A mechanism that combines evaporation of water resulting in local concentration and surfactant, self-assembly, and reaction and diffusion of silica source is proposed to describe the formation of ordered mesoporous silica fibers.
机译:有序介孔二氧化硅纤维在包括聚合催化和分离在内的多个领域提供了潜在的工业应用。了解合成条件对这些通过界面自组装生长法制备的纤维的影响对它们的生产和应用很重要。这项工作的重点是了解通过界面自组装方法形成的有序介孔二氧化硅纤维,这两个先前尚未研究的因素:二氧化硅源高度(原硅酸四丁酯,TBOS)和湿度的影响。在这里,TBOS的含量,界面面积,源的高度和环境的湿度发生了变化,以研究它们对纤维生长的影响。结果表明,TBOS含量和界面面积对有序介孔二氧化硅纤维的结果没有显着影响。二氧化硅源高度或环境湿度的增加会降低水的蒸发速度,从而使二氧化硅纤维的长度变短,内部孔隙结构和宏观形态的有序性降低,孔径变小。尝试混合生长培养基会消除纤维形态并产生螺旋状形状。提出了结合水的蒸发导致局部浓度和表面活性剂,自组装以及二氧化硅源的反应和扩散的机理来描述有序介孔二氧化硅纤维的形成。

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