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Frequency dependent electrical transport between conjugated polymer and single-walled carbon nanotubes

机译:共轭聚合物和单壁碳纳米管之间的频率依赖性电传输

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This work focuses o the combination of the complementary properties of single-walled carbon nanotube (SWNTs) and poly3-octylthiophene (P3OT), following a dielectric route to the characterization of a novel composite material. The structural and electrical caracterizaion of a SWNT/P3OT hybrid system performed by differential scanning calorimetry and a.c. impedance spectroscopy show interesting effects, including the tendency of the nanotube structure to nucleate crystal growth and substantial changes in the dielectric behavior of the polymer, due to the effect of the polymer on the nanotubes conformation. In particular, the curve peak of the imaginary part of the impedance spectra shows a shift to a higher frequency demonstrating that the crystallizaton of the polymer onto the nanotubes results into a different relaxation of the composite's electronic structure, as would be expected from a strong polymer-tube interaction. Raman spectroscopy is finally applied to suggest that in the composite film the changes in the dielectric properties can be explained in terms of a reduced vibrational freedom of the polymer chains as a consequence of the intercalation of the polymer matrix into the nanotubes' lattice.
机译:这项工作着眼于通过介电途径表征新型复合材料,将单壁碳纳米管(SWNTs)和聚3-辛基噻吩(P3OT)的互补特性结合起来。 SWNT / P3OT混合系统的结构和电气特性通过差示扫描量热法和交流电进行。阻抗谱显示出令人感兴趣的效应,包括由于聚合物对纳米管构象的影响,纳米管结构使晶体生长成核的趋势以及聚合物介电性能的实质性变化。特别地,阻抗谱的虚部的曲线峰值显示出向更高频率的偏移,表明聚合物在纳米管上的结晶导致复合材料的电子结构有不同的弛豫,正如强聚合物所预期的那样。管相互作用。最后应用拉曼光谱法表明,在复合膜中,介电性能的变化可以用由于聚合物基体插入纳米管晶格中而导致的聚合物链振动自由度的降低来解释。

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