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Influence of chemical composition porosity and fractal dimension on the electrical conductivity of carbon blacks

机译:化学成分孔隙度和分形尺寸对炭黑电导率的影响

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摘要

Carbonaceous materials analyzed in this investigation were six nanometric particle size carbon blacks. Carbons were texturally characterized by gas adsorption (N2, 77 K), helium and mercury density and mercury porosimetry measurements. Electrical conductivity was determinated by impedance spectroscopy, at room temperature. Several works related to the electrical conductivity and to textural parameters of carbon blacks, such as: porosity, specific surface area, etc., have been carried out. However, there are a type of parameters, such as the fractal dimension, the percentage of macropores, the particle size, or the packing density, that are also related to the electrical conductivity, but they have not been previously investigated. In this work, it has been researched how the increase in interparticle/intraparticle porosity decreases the electrical conductivity of the samples studied. Therefore, it is possible to conclude that in this study a complete research work on electrical conductivity has been carried out.
机译:在该研究中分析的碳质材料是六个纳米粒度的炭黑。碳是由气体吸附(N2,77 k),氦气和汞密度和汞孔隙测量测量的纹理表征。在室温下阻抗光谱法确定电导率。已经进行了几种与电导率和炭黑的纹理参数相关的作品,例如:孔隙率,比表面积等。然而,存在一种类型的参数,例如分形尺寸,宏级,粒度或填充密度的百分比,其与电导率也有关,但是它们之前未进行研究。在这项工作中,已经研究了颗粒间/粒前孔隙率的增加如何降低所研究的样品的电导率。因此,可以得出结论,在这项研究中,已经进行了关于导电性的完整研究工作。

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