Jayasinghe J M A R B, De Silva R T, de Silva Rohini M, de Silva K M Nalin, Mantilaka M M M G P G, Silva Vinod Asantha
Department of Chemistry, University of Colombo Colombo 00300 Sri Lanka
Sri Lanka Institute of Nanotechnology (SLINTEC), Nanotechnology and Science Park Pitipana Homagama 10200 Sri Lanka.
RSC Adv. 2019 Jan 2;9(2):636-644. doi: 10.1039/c8ra08543a.
Thermal conductivity of natural rubber (NR) was enhanced by incorporating novel conductive hybrid nanofillers, namely polyaniline grafted carbon black (PANI/CB) nanoparticles and carbon black nanoparticles linked with carbon microfiber (CF/CB) composites. The PANI/CB hybrid fillers were synthesized using an method, where aniline monomers were initially adsorbed onto carbon black spherical domains and, afterwards, it was polymerized in the presence of an oxidizer. Final rubber composites were prepared through melt mixing, where PANI/CB and CF/CB filler loading was kept at 40 parts per hundred of rubber (phr). The thermal conductivity values of the rubber composites with CF/CB (20 : 20) and PANI/CB (20 : 20) yield were 0.45 W m K and 0.31 W m K, respectively and the thermal conductivity improved significantly compared to the control (0.25 W m K) sample. The higher thermal conductivity values of CF/CB and PANI/CB incorporated composites suggest that the generated networked structure of CF and PANI nanofibers with CB nanoparticles has immensely contributed to enhancing the heat dissipation compared to that of the neat CB rubber composite. Scanning electron micrographs (SEM) confirmed the attachment of the synthesized PANI onto the spherical CB nanoparticles and interconnected morphology of CF/CB and PANI/CB hybrid fillers. The synthesized PANI/CB hybrid filler was further characterized using Fourier-transform infrared (FTIR) spectroscopy to evaluate the chemical properties. Furthermore, thermogravimetric analysis revealed the higher thermal stability of CF/CB (20 : 20) and PANI/CB (20 : 20) composites compared to the control. Moreover, the addition of CF/CB (20 : 20) and PANI/CB (20 : 20) improved the mechanical properties such as ultimate tensile strength, modulus at break, resilience and abrasion resistance significantly and well above the minimum required standard mechanical parameters in the tyre industry. These reinforced composites show great potential to be used as heat dissipating rubber composites in the tyre industry.
通过加入新型导电杂化纳米填料,即聚苯胺接枝炭黑(PANI/CB)纳米颗粒和与碳微纤维(CF/CB)复合的炭黑纳米颗粒,天然橡胶(NR)的热导率得到了提高。PANI/CB杂化填料采用一种方法合成,其中苯胺单体首先吸附在炭黑球形颗粒上,然后在氧化剂存在的情况下进行聚合。最终的橡胶复合材料通过熔融共混制备,其中PANI/CB和CF/CB填料的用量保持在每百份橡胶(phr)40份。CF/CB(20 : 20)和PANI/CB(20 : 20)用量的橡胶复合材料的热导率值分别为0.45 W m K和0.31 W m K,与对照(0.25 W m K)样品相比,热导率有显著提高。含有CF/CB和PANI/CB的复合材料具有较高的热导率值,这表明与纯炭黑橡胶复合材料相比,CF和PANI纳米纤维与CB纳米颗粒形成的网络结构极大地促进了散热。扫描电子显微镜(SEM)图像证实了合成的PANI附着在球形CB纳米颗粒上,以及CF/CB和PANI/CB杂化填料的相互连接形态。使用傅里叶变换红外(FTIR)光谱对合成的PANI/CB杂化填料进行了进一步表征,以评估其化学性质。此外,热重分析表明,与对照相比,CF/CB(20 : 20)和PANI/CB(20 : 20)复合材料具有更高的热稳定性。此外,添加CF/CB(20 : 20)和PANI/CB(20 : 20)显著改善了诸如极限拉伸强度、断裂模量、回弹性和耐磨性等机械性能,且远高于轮胎行业所需的最低标准机械参数值。这些增强复合材料在轮胎行业用作散热橡胶复合材料具有巨大潜力。