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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >In situ investigations on cetyltrimethyl ammonium surfactant/silicate systems, precursors of organized mesoporous MCM-41-type siliceous materials
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In situ investigations on cetyltrimethyl ammonium surfactant/silicate systems, precursors of organized mesoporous MCM-41-type siliceous materials

机译:十六烷基三甲基铵表面活性剂/硅酸盐体系的原位研究,是有机介孔MCM-41型硅质材料的前体

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Organized mesoporous silica (OMS) constitutes new materials with many potential applications. These materials with very well organized pores can be obtained by lowering the pH of precursor systems, i.e., highly alkaline silicate solutions containing cationic surfactants such as cetyltrimethylammonium bromide (CTAB) or chloride (CTAC). The precursor systems of OMS have been investigated prior to precipitation by in situ techniques. Si-29 liquid-state NMR spectroscopy has been used to determine the type of silicate species in the investigated systems and how it is affected by the presence of the surfactant. Fluorescence probing techniques with the fluorescent probes pyrene and dipyrenylpropane have been used to study the variation of properties of the CTAB and CTAC micelles upon successive additions of a large excess of base (sodium hydroxide or tetramethylammonium hydroxide) and silicate (water glass Or octameric species Si8O208-) as to generate the precursor systems that have the compositions that are used when synthesizing OMS. The effect of the surfactant concentration, the pH, and the nature of the silicate species used as a source of silica has been investigated. The results show that there is little binding of the hydroxyl and silicate ions on the CTAB micelles and little micelle growth in the precursor systems, under the experimental conditions used. Thus, the interactions between the silicate species and the surfactant micelles are weak in the precursor systems used. The absence of any organization in the system prior to precipitation suggests that the first and most important step in the synthesis of organized mesoporous silica is the formation of siliceous prepolymers. As these prepolymers grow, they bind an increasing amount of surfactant ions. At some point the precipitation;of a mesomorphous surfactant ion/polymerized silica complex takes place, as is commonly observed in many systems made up of a surfactant and an oppositely charged polyelectrolyte. A mechanism of formation of OMS based on these ideas and supported by experimental results on polyelectrolyte/oppositely charged surfactant systems is presented. [References: 66]
机译:有组织的介孔二氧化硅(OMS)构成了具有许多潜在应用的新材料。这些具有良好组织的孔的材料可以通过降低前体体系的pH来获得,即降低包含阳离子表面活性剂例如十六烷基三甲基溴化铵(CTAB)或氯化物(CTAC)的高碱性硅酸盐溶液。 OMS的前体系统在沉淀之前已通过原位技术进行了研究。 Si-29液态NMR光谱已用于确定研究系统中的硅酸盐种类类型,以及表面活性剂的存在如何影响硅酸盐种类。已使用荧光探针pyr和二dip基丙烷的荧光探测技术研究连续添加大量过量的碱(氢氧化钠或四甲基氢氧化铵)和硅酸盐(水玻璃或八聚体Si8O208)后CTAB和CTAC胶束的性能变化。 -)以产生具有在合成OMS时使用的组成的前体系统。已经研究了表面活性剂浓度,pH和用作二氧化硅源的硅酸盐种类的性质的影响。结果表明,在所使用的实验条件下,CTAB胶束上的羟基和硅酸根离子几乎没有结合,并且前体系统中的胶束几乎没有增长。因此,在所使用的前体体系中,硅酸盐物质与表面活性剂胶束之间的相互作用较弱。沉淀前体系中没有任何组织表明,合成有序介孔二氧化硅的第一步也是最重要的步骤是形成硅质预聚物。随着这些预聚物的生长,它们结合越来越多的表面活性剂离子。在某些情况下,会发生中型表面活性剂离子/聚合二氧化硅配合物的沉淀,这在许多由表面活性剂和带相反电荷的聚电解质组成的系统中通常会观察到。提出了基于这些思想并在聚电解质/带相反电荷的表面活性剂体系上的实验结果支持的OMS形成机理。 [参考:66]

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