首页> 外文期刊>Journal of Materials Science >Correlation between morphology and electrical conductivity of dried and carbonized multi-walled carbon nanotube/resorcinol-formaldehyde xerogel composites
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Correlation between morphology and electrical conductivity of dried and carbonized multi-walled carbon nanotube/resorcinol-formaldehyde xerogel composites

机译:干燥和碳化的多壁碳纳米管/间苯二酚-甲醛干凝胶复合材料的形貌与电导率的相关性

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摘要

Monolithic multi-walled carbon nanotube (MWCNT)/resorcinol-formaldehyde (RF) composite xerogel was synthesized by sol-gel polymerization of RF monomers in a surfactant-stabilized MWCNT aqueous suspension. The resulting composite wet gel was dried under ambient conditions and pyrolyzed in a N-2 atmosphere to obtain MWCNT/carbon (C) nanoporous xerogel. TEM images showed that the nanotubes had been completely exfoliated in the starting solution before addition of the reagents. Optical microscopy and SEM micrographs revealed that there were aggregates of MWCNTs with diameters of up to 50 A mu m in the final composites. Nitrogen adsorption analysis and mercury porosimetry of the pristine MWCNT-free and composite gels showed that the density and pore texture of the xerogel materials were not modified by the nanotubes, but were strongly influenced by the addition of surfactant (sodium dodecyl benzene sulfonate, NaDBS). Electrical conductivity was measured for the organic (MWCNT/RF) and carbonized (MWCNT/C) composites and evaluations determined that this parameter increased in different ways as a function of MWCNT concentration. A percolating scaling law of the form sigma ae (I center dot a'I center dot (c))(t) was obtained with a volume percolation threshold of I center dot (c) = 2.5 x 10(-4) and a critical exponent (t) of 1.0 for the organic nanocomposite. After pyrolysis, the carbonized xerogels exhibited an entirely different behavior with a continuous sharp increase in electrical conductivity with nanotube loading (4.5-fold increase at 1.64 v % MWCNT). Comparison of the data for experimental conductivity with the effective medium theory enabled estimation of an average length for the conductive strings formed by connected nanotube aggregations throughout the carbon matrix.
机译:通过RF单体在表面活性剂稳定的MWCNT水悬浮液中的溶胶-凝胶聚合反应,合成了单片多壁碳纳米管(MWCNT)/间苯二酚-甲醛(RF)复合干凝胶。将所得的复合湿凝胶在环境条件下干燥并在N-2气氛中热解以获得MWCNT /碳(C)纳米多孔干凝胶。 TEM图像表明,在添加试剂之前,纳米管已经在起始溶液中完全剥落。光学显微镜和SEM显微照片显示,最终复合物中存在直径最大为50 Aμm的MWCNT聚集体。不含MWCNT的原始凝胶和复合凝胶的氮吸附分析和水银孔隙率分析表明,干凝胶材料的密度和孔结构不受纳米管的影响,但受表面活性剂(十二烷基苯磺酸钠,NaDBS)的强烈影响。测量了有机(MWCNT / RF)和碳化(MWCNT / C)复合材料的电导率,评估确定该参数以不同方式随MWCNT浓度的增加而增加。获得了sigma ae(I中心点a'I中心点(c))(t)形式的渗透比例定律,其中体积渗透阈值为I中心点(c)= 2.5 x 10(-4)有机纳米复合材料的指数(t)为1.0。热解后,碳化的干凝胶表现出完全不同的行为,其电导率随纳米管负载的增加而连续急剧增加(在1.64 v%MWCNT处增加4.5倍)。通过将实验电导率数据与有效介质理论进行比较,可以估算整个碳基质中由连接的纳米管聚集体形成的导电线的平均长度。

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