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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Effect of microwave assisted and conventional thermal heating on the evolution of nanostructured inorganic-organic hybrid materials to binary ZrO2-SiO2 oxides
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Effect of microwave assisted and conventional thermal heating on the evolution of nanostructured inorganic-organic hybrid materials to binary ZrO2-SiO2 oxides

机译:微波辅助加热和常规加热对纳米结构无机-有机杂化材料向二元ZrO2-SiO2氧化物演化的影响

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The effect of microwave assisted and conventional thermal heating on the morphological,microstructural and compositional evolution upon annealing of inorganic-organic Si-Zr based hybrid materials and on their conversion to mixed oxides (consisting of host silica with variable amounts of zirconia) was systematically studied.Samples with different compositions (Si:Zr=2.5 :1;5 :1;10 :1;20 :1),annealed at different temperatures (RT,600,800,900 °C,1000 °C) by using either a microwave oven or a conventional muffle were analysed to clarify the role of microwave heating on the final molecular features of the materials.The composition of the hybrid,as well as of the final oxidic materials was determined by X-ray photoelectron spectroscopy (XPS) and elemental analysis (EA),whereas FT-IR and multinuclear solid-state NMR spectroscopies shed light on the changes occurring in the composition upon thermal heating and the degree of condensation of the silica network.Interesting differences in the morphology and in the microstructure of the hybrids and of the oxides as a function of the type of annealing were pointed out by nitrogen sorption and scanning electron microscopy (SEM).X-Ray diffraction (XRD) and transmission electron microscopy (TEM) were used to follow the conversion of the amorphous oxides to partially crystalline materials consisting of crystalline zirconia nanoclusters homogeneously dispersed in the amorphous silica matrix.Interesting microstructural and morphological differences were revealed between samples annealed in muffle and those heated in the presence of microwaves.
机译:系统研究了微波辅助加热和常规加热对无机-有机Si-Zr基杂化材料退火及其转化成混合氧化物(由氧化锆量可变的主体二氧化硅组成)的形态,微观结构和组成演变的影响样品组成不同(Si:Zr = 2.5:1; 5:1; 10:1; 20:1),使用微波炉或不锈钢在不同温度(RT,600,800,900°C,1000°C)下退火分析了传统的马弗炉以澄清微波加热对材料最终分子特征的作用。通过X射线光电子能谱(XPS)和元素分析(EA)确定了杂化材料以及最终氧化材料的组成),而FT-IR和多核固态NMR光谱则揭示了热加热时成分发生的变化以及二氧化硅网络的缩合度。通过氮吸附和扫描电子显微镜(SEM)指出了杂化体和氧化物的组织学和微观结构与退火类型的关系。使用了X射线衍射(XRD)和透射电子显微镜(TEM)随着无定形氧化物转化为由均匀分散在无定形二氧化硅基质中的结晶氧化锆纳米团簇组成的部分结晶材料。在马弗炉中退火的样品和在微波存在下加热的样品之间发现了有趣的微观结构和形态学差异。

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