Guo Qikai, Xue Qingzhong, Sun Jin, Dong Mingdong, Xia Fujun, Zhang Zhongyang
State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Qingdao 266580, Shandong, P. R. China.
Nanoscale. 2015 Feb 28;7(8):3660-7. doi: 10.1039/c4nr05264a.
Novel core/shell structured multi-walled carbon nanotube/amorphous carbon (MWCNT@AC) nanohybrids were successfully prepared using a simple and novel method. Subsequently, the MWCNT@AC nanohybrids were used as fillers to enhance the dielectric properties of poly(vinylidene fluoride) (PVDF) based composites. It is found that the dielectric constant of the MWCNT@AC/PVDF composites can reach 5910 (the dielectric loss is ∼2), which is considerably better than that of MWCNT/PVDF composites. The uniform amorphous carbon shell provides an insulative layer between adjacent MWCNTs in the polymer matrix, which not only prevents the direct contact of MWCNTs but also improves the dispersibility of the MWCNTs. Therefore, a surprising number of microcapacitors could be formed in the composites before the formation of a conductive network, leading to a gigantic enhancement in the dielectric properties. Our strategy provides a new approach to fabricate excellent dielectric materials for energy storage capacitors. In addition, the design concept used in this work can be extended to other carbon materials.
采用一种简单新颖的方法成功制备了新型核壳结构的多壁碳纳米管/非晶碳(MWCNT@AC)纳米杂化物。随后,将MWCNT@AC纳米杂化物用作填料以增强聚偏二氟乙烯(PVDF)基复合材料的介电性能。发现MWCNT@AC/PVDF复合材料的介电常数可达5910(介电损耗约为2),这比MWCNT/PVDF复合材料的介电常数要好得多。均匀的非晶碳壳在聚合物基体中相邻的多壁碳纳米管之间提供了一个绝缘层,这不仅防止了多壁碳纳米管的直接接触,还提高了多壁碳纳米管的分散性。因此,在导电网络形成之前,复合材料中可以形成数量惊人的微电容器,从而导致介电性能的巨大增强。我们的策略为制造用于储能电容器的优异介电材料提供了一种新方法。此外,这项工作中使用的设计概念可以扩展到其他碳材料。