首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Structural evolution upon thermal heating of nanostructured inorganic-organic hybrid materials to binary oxides MO2-SiO2 (M = Hf, Zr) as evaluated by solid-state NMR and FTIR spectroscopy
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Structural evolution upon thermal heating of nanostructured inorganic-organic hybrid materials to binary oxides MO2-SiO2 (M = Hf, Zr) as evaluated by solid-state NMR and FTIR spectroscopy

机译:通过固态NMR和FTIR光谱评估,将纳米结构的无机-有机杂化材料热加热为二元氧化物MO2-SiO2(M = Hf,Zr)时的结构演变

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The structural and compositional evolution of inorganic-organic silica-based hybrid materials and their conversion to mixed oxides, consisting of host silica with variable amounts of zirconia or hafnia (1:1 Si:M, 40:1 Si:M, M = Zr, Hf), was studied by multinuclear solid-state NMR spectroscopy, FTIR spectroscopy, and thermogravimetry. It is shown that the as-prepared materials, composed of M4O2-(OMc)(12) oxoclusters (M = Zr, Hf; OMc = methacrylate) and methacryloxymethyltriethoxysilane (MAPTMS), are not completely polymerized. Rather, a finite number of double bonds remain independent of the actual sample composition. Thermolysis between 300 and 500 degrees C is accompanied by drastic changes in the structural composition, as reflected by the complete loss of all organic components. The incorporation of oxoclusters is found to catalyze the cleavage of Si-C bonds. At the same time, continuous alterations in the inorganic/oxide part are registered. The degree of condensation, as derived from the Si-29 NMR data, increases steadily with calcination temperature and is found to depend on the oxocluster amount. Thus, for the samples with the highest oxocluster content, a pronounced temperature dependence for the degree of condensation is observed that is absent for the samples with a small oxocluster content or for pure MAPTMS. Zr-91 NMR measurements on the sample with the highest zirconium content indicate that upon calcination at 1000 degrees C, only a small amount of crystalline zirconia with tetragonal coordination exists. The major zirconia fraction distributed in the silica matrix is therefore in an amorphous state.
机译:无机-有机硅基杂化材料的结构和组成演变及其向混合氧化物的转化,混合氧化物由具有可变氧化锆或氧化f(1:1 Si:M,40:1 Si:M,M = Zr的主体二氧化硅)组成,Hf),是通过多核固态NMR光谱,FTIR光谱和热重分析法研究的。结果表明,由M4O2-(OMc)(12)氧簇(M = Zr,Hf; OMc =甲基丙烯酸酯)和甲基丙烯酰氧基甲基三乙氧基硅烷(MAPTMS)组成的制备材料并未完全聚合。而是,有限数量的双键保持独立于实际样品组成。在300到500摄氏度之间的热解伴随着结构成分的急剧变化,这反映在所有有机成分的完全损失上。发现掺入氧簇可催化Si-C键的断裂。同时,记录了无机/氧化物部分的连续变化。由Si-29 NMR数据得出的缩合度随煅烧温度稳定地增加,并且发现其取决于氧簇的量。因此,对于具有最高簇簇含量的样品,观察到明显的温度依赖性的缩合度,而对于具有低簇簇含量的样品或纯MAPTMS则没有。对锆含量最高的样品进行的Zr-91 NMR测量表明,在1000摄氏度下煅烧时,仅存在少量具有四方配位的晶体氧化锆。因此,分布在二氧化硅基质中的主要氧化锆级分处于非晶态。

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