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首页> 外文期刊>Journal of Materials Science >Fabrication of thermoplastic polyurethane and polyaniline conductive blend with improved mechanical, thermal and excellent dielectric properties: exploring the effect of ultralow-level loading of SWCNT and temperature
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Fabrication of thermoplastic polyurethane and polyaniline conductive blend with improved mechanical, thermal and excellent dielectric properties: exploring the effect of ultralow-level loading of SWCNT and temperature

机译:具有改进的机械,热和优异介电性能的热塑性聚氨酯和聚苯胺导电共混物的制备:探讨超级SWCNT和温度的效果

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摘要

A novel multifunctional conductive blend and nanocomposites based on thermoplastic polyurethane (TPU), polyaniline (PANI) and carboxylic acid functionalized single-wall carbon nanotubes (SWCNT) with very high mechanical, thermal and excellent dielectric properties have been fabricated. The dispersion pattern and the interconnectivity of nanowire form of PANI and SWCNT in the TPU matrix are observed from HRTEM and FESEM photomicrographs. The interfacial interaction between the constituents in terms of hydrogen bonding has been confirmed from the FTIR and Raman spectra. The enhancement in tensile strength at 10 weight percentage (wt%) PANI loading explores the reinforcing nature of PANI on TPU matrix. The increase in thermal stability of the TPU/PANI blend in comparison with PANI again confirms the establishment of chemical linkages in the interface. The effect of PANI loading and temperature on the dielectric relaxation behavior has been explored in a wide range of frequency (1-10(6) Hz). The easiness in the polarization of the dipoles in PANI as well as in SWCNT has been confirmed from the improved value of dielectric permittivity (epsilon '). The pronounced tunneling and hopping mode of conduction have reflected from conductivity (sigma(ac)) and reduction in impedance (Z ' and Z '') value. The substantial improvement in epsilon ' and sigma(ac)of TPU/PANI/SWCNT nanocomposites at ultralow loading level of SWCNT (0.5wt %) in comparison with unfilled TPU/PANI blend is the uniqueness of this study. The effect of temperature on epsilon ' and sigma(ac)ensures the negative temperature coefficient (NTC) behavior of resistance of TPU/PANI blends. Graphic abstract
机译:一种新型多官能的导电混合物和基于热塑性聚氨酯(TPU),聚苯胺(PANI)和羧酸官能化的纳米复合材料的单壁碳纳米管(SWCNT)具有非常高的机械,热和优良的介电性能进行了制造。在TPU基质中的分散体图案和PANI的纳米线形式的互连性和SWCNT从HRTEM和FESEM显微照片观察到。在氢键方面的组分之间的界面相互作用已经从FTIR和拉曼光谱证实。在10重量百分比(重量%)PANI加载拉伸强度的增强探索PANI对TPU矩阵的增强性质。在与聚苯胺相比,TPU /聚苯胺共混物的热稳定性的增加再次证实了接口建立化学键的。 PANI负载和温度的上介电弛豫特性的效果已探索在宽范围频率(1-10(6)赫兹)的。在PANI以及在SWCNT的偶极子的极化容易性已经从介电常数(ε-“)的改进的值证实。的显着的隧穿和传导的跳频模式已经从电导率(西格马(AC)),并在减少的阻抗(Z'和Z‘’)值反映出来。与未填充TPU /聚苯胺混合比较小量的实质性改善“和TPU /聚苯胺/在SWCNT(0.5重量%)的超低负荷水平SWCNT纳米复合材料的西格玛(AC)是这项研究的独特之处。上的ε-'和西格马(AC)温度的影响,确保TPU / PANI共混物的电阻的负温度系数(NTC)的行为。图形摘要

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