论文标题

用单一和杂化碳纳米管填充剂探测聚合物复合材料的载体动力学,以提高热电性能

Probing the carrier dynamics of polymer composites with single and hybrid carbon nanotube fillers for improved thermoelectric performance

论文作者

Konidakis, Ioannis, Krause, Beate, Park, Gyu-Hyeon, Pulumati, Nithin, Reith, Heiko, Pötschke, Petra, Stratakis, Emmanuel

论文摘要

聚合物宿主中碳纳米管(CNT)的掺入为开发高级热电(TE)复合材料提供了一个很好的平台。多年来,已经研究了几种CNT/聚合物复合材料制剂,以最大程度地提高TE性能。同时,几项研究着重于CNT本身和衍生结构中带电的激子的衰减动力学,旨在研究自由电荷载体的生命和相应的重组过程。后一种物理现象在各种能量转化和清除材料的性能中起着至关重要的作用。然而,到目前为止,还没有关于TE参数和含有TE聚合物复合材料的临界电荷载体动力学组合的系统研究。在此,通过小型混合融化,制备了基于聚碳酸酯(PC)和聚醚醚酮(PEEK)聚合物矩阵的各种单一和杂化CNT填充剂的复合材料。在同一负载下,与使用混合填充系统相比,在PC中添加单个填充剂会导致更高的Seebeck系数和相似的电导率。相比之下,使用PEEK复合材料中的混合填充系统,与单个填充复合材料相比,可以达到更高的功率因子。此外,使用超快速激光时间分辨的瞬态吸收光谱(TAS)研究了基于PC的复合材料,以研究TE膜内自由电荷载体传输的激子寿命和物理起源。这项研究的发现揭示了TE参数与所获得的电荷载体动力学之间的有趣联系。

The incorporation of carbon nanotubes (CNTs) within polymer hosts offers a great platform for the development of advanced thermoelectric (TE) composite materials. Over the years, several CNT/polymer composite formulations have been investigated on an effort to maximize the TE performance. Meanwhile, several studies focused on the decay dynamics of the charged excitons within CNTs itself and therefrom derived structures, aiming to investigate the lifetimes and the corresponding recombination processes of free charge carriers. The latter physical phenomena play a crucial role in the performance of various types of energy converting and scavenging materials. Nevertheless, up to this date, there is no systematic study on the combination of TE parameters and the critical charge carrier dynamics within CNT containing TE polymer composites. Herein, a variety of composites with single and hybrid CNT fillers based on polycarbonate (PC) and polyether ether ketone (PEEK) polymer matrices were prepared by melt-mixing in small scale. At the same loading, the addition of single fillers in PC results in higher Seebeck coefficients and similar conductivities when compared to the use of hybrid filler systems. In contrast, with hybrid filler systems in PEEK composites, higher power factors could be reached than in single filler composites. Moreover, the PC-based composites are studied using ultrafast laser time-resolved transient absorption spectroscopy (TAS), for the investigation of the exciton lifetimes and the physical origins of free charge carrier transport within the TE films. The findings of this study reveal interesting links between the TE parameters and the obtained charge carrier dynamics.

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