Qi Jun Lei, Wang Xu, Lin Jing Huang, Zhang Fu, Feng Ji Cai, Fei Wei-Dong
State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.
Nanoscale. 2015 Feb 28;7(8):3675-82. doi: 10.1039/c4nr07284g.
Pristine graphene with a 3D structure is desired for use in graphene-based supercapacitors, yet the very poor wettability of such graphene in water has limited its practical application. Here we report a way to simultaneously realize the 3D structure and good wettability in vertically-oriented few-layered graphene (VFG) grown by plasma-enhanced chemical vapor deposition. Based on scanning and transmission electron microscopic, Raman spectroscopic, contact angle (CA) and electrochemical analyses, a mechanism to explain the improved performance of VFG-based supercapacitors by defect-stimulated increases in wettability is proposed. The CA of our VFG samples notably reduces from 131° to 73° as the content of surface defects increases, which confirms that the wettability of VFG is markedly improved with an increased density of surface defects. Electrochemical results indicate that the VFG samples with a high density of defects exhibit high specific capacities of up to 704 μF cm(-2) and a good cycling stability with about 91.2% capacitance retention after 3000 cycles. The excellent supercapacitor performance of the VFG samples with a high density of defects makes them attractive candidates for ultrathin high-performance supercapacitor electrodes.
用于基于石墨烯的超级电容器的理想材料是具有三维结构的原始石墨烯,然而这种石墨烯在水中极差的润湿性限制了其实际应用。在此,我们报告了一种通过等离子体增强化学气相沉积生长垂直取向的少层石墨烯(VFG)来同时实现三维结构和良好润湿性的方法。基于扫描电子显微镜、透射电子显微镜、拉曼光谱、接触角(CA)和电化学分析,提出了一种机制来解释基于VFG的超级电容器通过缺陷刺激的润湿性增加而提高的性能。随着表面缺陷含量的增加,我们的VFG样品的接触角从131°显著降低到73°,这证实了随着表面缺陷密度的增加,VFG的润湿性显著提高。电化学结果表明,具有高密度缺陷的VFG样品表现出高达704 μF cm(-2)的高比电容以及良好的循环稳定性,在3000次循环后电容保持率约为91.2%。具有高密度缺陷的VFG样品优异的超级电容器性能使其成为超薄高性能超级电容器电极的有吸引力的候选材料。