Structure and electrical transport properties of carbon nanofibres/carbon nanotubes 3D hierarchical nanocomposites: Impact of the concentration of acetylacetonate catalyst

被引:13
|
作者
Zambrzycki, Marcel [1 ]
Los, Szymon [2 ]
Fraczek-Szczypta, Aneta [1 ]
机构
[1] AGH Univ Sci & Technol, Fac Mat Sci & Ceram, Al Mickiewicza 30, PL-30059 Krakow, Poland
[2] Kazimierz Wielki Univ, Inst Phys, Al Powstancow Wielkopolskich 2, PL-85090 Bydgoszcz, Poland
关键词
Nanostructured materials; Nanocomposites; Electrical properties; Carbon; ENERGY-LOSS SPECTROSCOPY; MECHANICAL-PROPERTIES; HOPPING CONDUCTION; DISORDERED CARBON; RAMAN-SPECTRA; NANOFIBERS; CARBONIZATION; COMPOSITES; NANOPARTICLES; GRAPHENE;
D O I
10.1016/j.ceramint.2020.09.269
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The aim of this study was an extensive analysis of the correlations linking the structure with the electrical properties of hierarchical nanocomposites - electrospun carbon nanofibres/carbon nanotubes (eCNF/CNT). Herein, we focus primarily on the determination and separation of the impact of iron (III) acetylacetonate (Fe (Acac)3) on the structure of core-eCNFs from the overall effect it exerts on the global ordering and electrical properties of nanocomposites. The structure of materials was evaluated using highly local microscopic and diffraction techniques as well as global spectroscopic methods. The charge transport properties were determined through analysis of the temperature-dependent conductivity via Mott's variable-range hopping model. The investigation revealed that increasing concentration of Fe(Acac)(3) results in higher surface density of CNTs, which affects the electrical transport in nanocomposites positively (158% increase in sigma(298K); notable decline in T-0). However, it was proved that high catalyst concentrations simultaneously cause amorphisation of core-eCNFs and increase the activation energy of hopping conduction in them. As a consequence of the above, we estimated the concentration of Fe(Acac)(3) (similar to 3.0%), ensuring the best electrical properties. Additionally, it was demonstrated that desorption of electrically active guest molecules causes notable changes in the electronic transport in nanocomposites.
引用
收藏
页码:4020 / 4033
页数:14
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