首页> 外文会议>Materials Science Technology Conference >STRUCTURAL CHARACTERIZATION OF CARBON-BASED MATERIALS OBTAINED BY SPARK PLASMA SINTERING OF NON-GRAPHITIC CARBON WITH NICKEL AND IRON AS CATALYSTS AND SPACE HOLDERS
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STRUCTURAL CHARACTERIZATION OF CARBON-BASED MATERIALS OBTAINED BY SPARK PLASMA SINTERING OF NON-GRAPHITIC CARBON WITH NICKEL AND IRON AS CATALYSTS AND SPACE HOLDERS

机译:用镍和铁作为催化剂和空间支架,用镍和铁的火花等离子体烧结获得的碳基材料的结构表征

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In this work, carbon-based materials were obtained by graphitization-accompanied -sintering of mixtures containing non-graphitic forms of carbon (nanodiamonds or amorphous carbon) and nickel or iron as graphitization catalysts. The mixtures were consolidated by Spark Plasma Sintering (SPS). After sintering, the metals were selectively dissolved from the compacts in hydrochloric acid solution. The structural investigations of the obtained carbon-based materials were conducted using X-ray diffraction, Raman spectroscopy, Scanning and Transmission Electron Microscopy and specific surface area (SSA) measurements. Selective dissolution of the metals resulted in the formation of carbon-based porous compacts, which retained the shape of the as-sintered composite metal-carbon compacts. The dependences of the phase composition and structural features of the carbon-based materials on the characteristics of the carbon source and sintering conditions were analyzed. It was found that SPS of nanodiamonds in the presence of nickel leads to a dramatic decrease in the SSA of the carbon-based material (measured after nickel has been dissolved) relative to the initial nanodiamond powder. The graphitization degree of the amorphous carbon in the presence of nickel increased with the SPS temperature; however, the SSA values of the obtained carbon-based materials did not follow any discernible trend. The iron-containing mixtures showed the iron carbide Fe3C phase after the SPS. The products of partial dissolution of iron from the compacts contained carbon that was poorly graphitized and its graphitization degree was not influenced by the sintering temperature.
机译:在这项工作中,通过获得的碳系材料的石墨化伴随含碳(纳米金刚石或无定形碳)和镍或铁作为石墨化催化剂的非石墨形式的混合物的-sintering。将混合物通过放电等离子烧结(SPS)合并。在烧结后,金属被有选择地从在盐酸溶液中的压块溶解。所得到的碳系材料的结构的调查用X射线衍射,拉曼光谱,扫描和透射电子显微镜,比表面积(SSA)的测量进行。金属的选择性溶解导致基于碳的多孔坯块,其保留了作为烧结复合金属 - 碳成形体的形状的形成。相位成分和碳源的特性和烧结条件的基于碳的材料的结构特征的依赖性进行了分析。结果发现,在镍引线的存在下在碳系材料的SSA的显着降低纳米金刚石SPS(镍后测量已经溶解)相对于所述初始纳米金刚石粉末。在镍与SPS温度升高的存在无定形碳的石墨化度;然而,所获得的碳系材料的SSA值没有跟随任何可辨别的趋势。含铁的混合物显示出SPS后的碳化铁的Fe3C相。从压块铁的部分溶解的产物中所含的碳这是不良的石墨和其石墨化度不是由烧结温度的影响。

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