Maity Arjun, Biswas Mukul
Department of Chemistry, Presidency College, 86/1 College Street, Kolkata 700073, West Bengal, India.
J Nanosci Nanotechnol. 2008 Apr;8(4):1751-6.
N-vinylcarbazole (NVC) was polymerized in bulk through the interaction of multi-walled carbon nanotube (MWCNT) without any extraneous catalyst. A PNVC-MWCNT composite was isolated by MeOH precipitation of a polymerization system containing NVC and MWCNT at melting temperature of the monomer. The inclusion of PNVC in the composite was endorsed by the FTIR study. TG analysis revealed the thermal stability trend as MWCNT > PNVC-MWCNT composite > PNVC. DTA showed two exothermic peaks at 427 degrees C and 607 degrees C in the PNVC-MWCNT composite. Transmission electron microscopic analyses of MWCNT revealed presence of tubular MWCNT particles with diameters in nm range while the corresponding analysis for the composite showed the formation of spherical dark polymer particles encapsulating cylindrical MWCNT moieties with some ends of uncoated MWCNT tubes (light shades) protruding out of the dark spherical particles. Scanning electron microscopic analysis revealed presence of tubular CNT particles entangled with the composite particles of irregular shapes and sizes. XRD analysis revealed no additional crystalline peaks for PNVC in the composite. In contrast to PNVC homopolymer (10(-12)-10(-16) S/cm), the dc conductivity values of the composite varied form 1.3 to 33 S/cm depending upon the weight ratio of MWCNT and PNVC in the composite. Current-voltage characteristics of the composite showed a linear variation and conductivity-temperature studies revealed an increase in conductivity by 35% in the temperature range 150-220 degrees C.
N-乙烯基咔唑(NVC)在没有任何外加催化剂的情况下,通过多壁碳纳米管(MWCNT)的相互作用进行本体聚合。在单体的熔融温度下,通过甲醇沉淀含有NVC和MWCNT的聚合体系,分离出PNVC-MWCNT复合材料。FTIR研究证实了复合材料中存在PNVC。TG分析表明热稳定性趋势为MWCNT>PNVC-MWCNT复合材料>PNVC。DTA显示PNVC-MWCNT复合材料在427℃和607℃有两个放热峰。MWCNT的透射电子显微镜分析显示存在直径在纳米范围内的管状MWCNT颗粒,而对复合材料的相应分析表明形成了球形深色聚合物颗粒,包裹着圆柱形MWCNT部分,一些未包覆的MWCNT管的末端(浅色)从深色球形颗粒中突出。扫描电子显微镜分析显示存在与不规则形状和尺寸的复合颗粒缠结的管状CNT颗粒。XRD分析表明复合材料中PNVC没有额外的结晶峰。与PNVC均聚物(10^(-12)-10^(-16) S/cm)相比,复合材料的直流电导率值在1.3至3 S/cm之间变化,这取决于复合材料中MWCNT和PNVC的重量比。复合材料的电流-电压特性呈线性变化,电导率-温度研究表明在150-220℃温度范围内电导率增加了35%。