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首页> 外文期刊>Comptes Rendus Chimie >A systematic methodology to design silica templates: Silica microemulsion formulation and nanodroplet type and size estimation
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A systematic methodology to design silica templates: Silica microemulsion formulation and nanodroplet type and size estimation

机译:设计二氧化硅模板的系统方法:二氧化硅微乳液配方以及纳米液滴的类型和大小估算

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摘要

A systematic study of the design and characterization of silica-microemulsion templates is presented. The ternary phase diagrams in micro-heterogeneous systems, by using a non-ionic surfactant (Brij 30) and different silica precursors (MTEOS, TEOS, PTEOS), have been drawn. Based on Khalweit diagrams, the phase inversion temperature was estimated as close to 315 K, for both alchil (TEOS) and aril (PTEOS) types of alcoxides. By correlating the information obtained from phase diagrams at room temperature with that of size effects revealed by VIS absorption molecular probes (bromthymol blue dye), the phase inversion point, i.e. the transition point from water-in-oil to oil-in-water microemulsion, was also clearly established as corresponding to R ~ 1. Besides technically attractive features such as a wide variety of inorganic and hybrid nanomaterials, high specific surface and highly efficient applicative properties of the final materials, the approach of silica-microemul-sion-based templates can be seen as a route towards the Green Chemistry concept.
机译:本文对二氧化硅微乳液模板的设计和表征进行了系统的研究。通过使用非离子表面活性剂(Brij 30)和不同的二氧化硅前体(MTEOS,TEOS,PTEOS),绘制了微均相系统中的三元相图。根据Khalweit图,对于Alchil(TEOS)和Aril(PTEOS)类型的醇盐,相转化温度估计接近315K。通过将室温下从相图中获得的信息与VIS吸收分子探针(溴百里香酚蓝染料)揭示的尺寸效应的信息相关联,可以找到相转化点,即从油包水到水包油微乳液的转变点,也明确地确定为对应于R〜1。除了具有技术吸引力的特征(例如多种无机和杂化纳米材料,最终材料的高比表面和高效应用特性)之外,还采用了基于二氧化硅微乳液的方法模板可以视为通向绿色化学概念的途径。

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