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Mixed Silica Titania Materials Prepared from a Single-Source Sol-Gel Precursor: A Time-Resolved SAXS Study of the Gelation, Aging, Supercritical Drying, and Calcination Processes

机译:从单一来源的溶胶-凝胶前体制备的混合二氧化硅二氧化钛材料:凝胶,老化,超临界干燥和煅烧过程的时间分辨SAXS研究

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摘要

The morphology of gels prepared from a silica/titania single-source precursor (1), obtained by reaction of 3-oxoethyl-6-trimethoxysilyl-hexan-2-one with Ti((OPr)-Pr-i)(4), was investigated by small-angle X-ray scattering (SAXS) through all stages of the preparation process, that is, gelation, aging, drying, and calcination. The same investigations were performed for mixtures of 1 and Si(OEt)(4). Immediately after the start of the reaction small primary particles are formed, the size of which (r = 0.5 +/- 0.1 nm) remains constant through the gelation and aging process. Anomalous small-angle X-ray scattering (ASAXS) measurements strongly indicate that the primary particles are formed by hydrolysis and condensation of the titanium alkoxide moiety of 1. Condensation proceeds by a slower aggregation of the primary particles. Additional Si/O from Si(OEt)(4) is incorporated between the clusters. The size of the mass fractal secondary particles formed by aggregation of the primary particles increases approximately exponentially with the time. Drying by either solvent evaporation or supercritical extraction with CO2 results in a decrease of the primary particle size to r = 0.4 nm, and the secondary particles also become smaller. The primary particles disappear during calcination in air, that is, when the organic groups tethering the silicon and titanium atoms are destroyed. However, the general structure of the network is maintained.
机译:由二氧化硅/二氧化钛单源前体(1)制备的凝胶的形态,该前体是通过3-氧代乙基-6-三甲氧基甲硅烷基-己烯-2-酮与Ti((OPr)-Pr-i)(4)反应制得的,在制备过程的所有阶段,即小胶凝,老化,干燥和煅烧过程中,均采用小角X射线散射(SAXS)进行了研究。对1和Si(OEt)(4)的混合物进行了相同的研究。反应开始后立即形成小初级颗粒,其大小(r = 0.5 +/- 0.1 nm)在凝胶化和老化过程中保持恒定。小角度X射线散射异常(ASAXS)测量强烈表明,初级粒子是由1的钛醇盐部分的水解和缩合形成的。缩合通过初级粒子的缓慢聚集而进行。来自Si(OEt)(4)的其他Si / O被合并到群集之间。通过一次粒子的聚集而形成的质量分数维二次粒子的尺寸随时间近似成指数增长。通过溶剂蒸发或用CO2超临界萃取进行干燥会导致一次粒径减小至r = 0.4 nm,并且二次粒径也变小。初级颗粒在空气中煅烧期间消失,也就是说,当束缚硅和钛原子的有机基团被破坏时。但是,网络的总体结构得以保留。

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