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TITANIA-SILICA MIXED OXIDES .1. INFLUENCE OF SOL-GEL AND DRYING CONDITIONS ON STRUCTURAL PROPERTIES

机译:氧化钛-氧化钛混合氧化物1。溶胶-凝胶和干燥条件对结构性能的影响

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Mesoporous titania-silica aerogels with highly dispersed titanium have been prepared by an alkoxide-sol-gel process with ensuing semicontinuous extraction using supercritical CO2. An acidic hydrolysant was added to a solution of tetraisopropoxytitanium(IV) modified by acetylacetonate and tetramethoxysilicon(IV) in isopropanol. The resulting titania-silica gels were dried by different methods, including conventional drying, high-temperature supercritical drying, and extraction with supercritical CO2 (low-temperature aerogel). The influence of preparation parameters (the hydrolysis route, Ti-content, drying method, and calcination temperature) on the structural and chemical properties of the aero- and xerogels was studied by means of N-2-physisorption, X-ray diffraction, thermal analysis, and vibrational spectroscopy (FTIR, FTRaman). Prehydrolysis of the silicon alkoxide generally led to lower porosity, but did not influence the Si-O-Ti connectivity up to a calcination temperature of 1073 K. The conventionally dried xerogels contained titanium well-dispersed in the silica matrix and were predominantly microporous. High-temperature supercritical drying afforded meso- to macroporous aerogels with negligible microporosity, but undesired segregation of anatase. With the low-temperature aerogels, an increase of the nominal TiO2 content from 2 to 20 wt% resulted in lower microporosity, higher BET surface area (up to ca. 700 m(2)/g), and a rise in the contribution of Si-O-Ti species. Concomitantly the Ti-O-Ti connectivity increased without any indication of long-range ordering from X-ray analysis. The low-temperature aerogel with 20 wt% TiO2 combined mesoporosity with high Ti dispersion and structural stability up to 873 K in air, properties desirable for epoxidation of olefins. (C) 1995 Academic Press, Inc. [References: 64]
机译:已经通过醇盐-溶胶-凝胶法制备了具有高度分散的钛的中孔二氧化钛-二氧化硅气凝胶,随后使用超临界CO 2半连续萃取。将酸性水解剂添加至经乙酰丙酮改性的四异丙氧基钛(IV)和异丙醇中的四甲氧基硅(IV)的溶液。通过不同的方法干燥所得的二氧化钛-硅胶,包括常规干燥,高温超临界干燥和用超临界CO 2(低温气凝胶)萃取。通过N-2-物理吸附,X射线衍射,热学等方法研究了制备参数(水解途径,Ti含量,干燥方法和煅烧温度)对气凝胶和干凝胶结构和化学性质的影响。分析和振动光谱(FTIR,FTRaman)。烷氧基硅的预水解通常导致较低的孔隙率,但在最高1073 K的煅烧温度下不会影响Si-O-Ti的连通性。常规干燥的干凝胶含有良好分散在二氧化硅基质中的钛,并且主要为微孔。高温超临界干燥可提供中微孔至大孔的气凝胶,微孔率可忽略不计,但锐钛矿不希望有的分离。对于低温气凝胶,TiO2标称含量从2 wt%增加到20 wt%导致较低的微孔率,较高的BET表面积(最高约700 m(2)/ g)和Si-O-Ti物种。同时,Ti-O-Ti的连通性增加,而没有任何X射线分析表明其长程有序的迹象。具有20 wt%TiO2的低温气凝胶结合了介孔性和高Ti分散性,在空气中的结构稳定性高达873 K,这是烯烃环氧化所需的性能。 (C)1995 Academic Press,Inc. [参考:64]

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