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Porous Ceramic Materials From Polysiloxane-Clay Composites

机译:聚硅氧烷-粘土复合材料的多孔陶瓷材料

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摘要

This study describes the structural, porosity and morphological changes of porous polymer-derived ceramics obtained by pyrolysis of polysiloxane-clay composites, containing a pore former based on poly(dimethylsiloxane) and nickel acetate as nanostructure inductor. The composites were blended in a steel mold, thermally treated at 950 degrees C and 1500 degrees C (inert atmosphere). The increase of the temperature together with the presence of Ni resulted in more crystalline and porous ceramics and a higher ordering process of C-free phase in the Ni-containing sample. The ceramics revealed a wide pore size distribution, from micro to macropores. At 950 degrees C the ceramic revealed the presence of pores and Ni- and C-rich islands dispersed on the fracture surface. However, at 1500 degrees C, nanowires with large aspect ratio, constituted by Si, C and O elements were generated. Thus, the presence of Ni associated to higher pores amount gave rise to an appropriate environment for the nucleation and growth of SiCO nanowires.
机译:这项研究描述了通过热解聚硅氧烷-粘土复合材料获得的多孔聚合物衍生陶瓷的结构,孔隙率和形态变化,该复合材料包含基于聚(二甲基硅氧烷)和醋酸镍的成孔剂作为纳米结构感应剂。将复合材料在钢模中混合,在950摄氏度和1500摄氏度(惰性气氛)下进行热处理。温度的升高以及镍的存在导致了更多的结晶和多孔陶瓷,以及含镍样品中无碳相的更高有序化过程。陶瓷显示出从微孔到大孔的宽孔径分布。在950摄氏度时,陶瓷显示出孔隙和分散在断裂面上的富Ni和C的岛。但是,在1500℃下,产生了由Si,C和O元素构成的长径比大的纳米线。因此,与较高的孔数量相关的Ni的存在为SiCO纳米线的成核和生长提供了合适的环境。

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