首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >New Strategy Using Glycol-Modified Silane to Synthesize Monodispersed Mesoporous Silica Spheres Applicable to Colloidal Photonic Crystals
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New Strategy Using Glycol-Modified Silane to Synthesize Monodispersed Mesoporous Silica Spheres Applicable to Colloidal Photonic Crystals

机译:使用乙二醇改性硅烷合成适用于胶体光子晶体的单分散介孔二氧化硅球的新策略

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摘要

A new approach focusing on the reactivity of a silica source was developed for the particle size control of monodispersed mesoporous silica spheres (MMSSs). A glycol-modified silanes, tetrakis(2-hydroxyethyl) orthosilicate was chosen as the silica source and successfully applied in the surfactant-templated synthesis of MMSSs in a very dilute alkaline alcohol-water mixture. Due to its higher hydrolysis rate compared with tetraalkyl orthosilicates, it took less time for the primary particles to come out, resulting in the formation of small particles with diameters falling in the low submicrometer range. The resultant spheres possessed a well-ordered mesoporous structure, which was typicallyMCM- 41-type hexagonal. The MCM-48-type cubic spheres could also be obtained by changing the reaction condition. The monodispersity and particle size of the spheres were precisely controlled by the adjustment of the solvent composition in the methanol-ethanol-water system. Furthermore, ionic colloidal crystals exhibiting a well-defined stop band in the visible light region could be fabricated from the resultant MMSSs for the first time. This work encourages the further utilization of MMSSs in photonics as well as in catalysis or biochemistry.
机译:开发了一种关注二氧化硅源反应性的新方法,用于控制单分散介孔二氧化硅球(MMSS)的粒径。选择了乙二醇改性的硅烷,四(2-羟乙基)正硅酸酯作为二氧化硅源,并成功地将其用于在非常稀的碱性醇-水混合物中以表面活性剂为模板的MMSS合成。由于与原硅酸四烷基酯相比,其水解速率更高,因此初级颗粒的析出花费的时间更少,从而形成了直径落在低亚微米范围内的小颗粒。所得的球具有良好有序的介孔结构,其通常为MCM-41型六边形。通过改变反应条件也可以得到MCM-48型立方球。通过调节甲醇-乙醇-水系统中的溶剂组成,可以精确地控制球体的单分散性和粒径。此外,可以首次从所得的MMSS中制备在可见光区域显示出明确定义的阻带的离子胶体晶体。这项工作鼓励在光子学以及催化或生物化学中进一步利用MMSS。

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