Huang Haifu, Tang Yanmei, Xu Lianqiang, Tang Shaolong, Du Youwei
Jiangsu Key Laboratory for Nanotechnology, Nanjing National Laboratory of Microstructures and Department of Physics, Nanjing University , Nanjing 210093, People's Republic of China.
ACS Appl Mater Interfaces. 2014 Jul 9;6(13):10248-57. doi: 10.1021/am501635h. Epub 2014 Jun 27.
Here, a novel graphene composite foam with 3D lightweight continuous and interconnected nickel network was successfully synthesized by hydroiodic (HI) acid using nickel foam as substrate template. The graphene had closely coated on the backbone of the 3D nickel conductive network to form nickel network supported composite foam without any polymeric binder during the HI reduction of GO process, and the nickel conductive network can be maintained even in only a small amount of nickel with 1.1 mg/cm(2) and had replaced the traditional current collector nickel foam (35 mg/cm(2)). In the electrochemical measurement, a supercapacitor device based on the 3D nickel network and graphene composite foam exhibited high rate capability of 100 F/g at 0.5 A/g and 86.7 F/g at 62.5 A/g, good cycle stability with capacitance retention of 95% after 2000 cycles, low internal resistance (1.68 Ω), and excellent flexible properties. Furthermore, the gravimetric capacitance (calculated using the total mass of the electrode) was high up to 40.9 F/g. Our work not only demonstrates high-quality graphene/nickel composite foam, but also provides a universal route for the rational design of high performance of supercapacitors.
在此,以泡沫镍为基底模板,通过氢碘酸(HI)成功合成了一种具有三维轻质连续且相互连接的镍网络的新型石墨烯复合泡沫材料。在氧化石墨烯(GO)的HI还原过程中,石墨烯紧密包覆在三维镍导电网络的骨架上,形成了无需任何聚合物粘结剂的镍网络支撑复合泡沫,并且即使在镍含量仅为1.1 mg/cm²的少量情况下,镍导电网络仍能得以保持,且已替代了传统的集流体泡沫镍(35 mg/cm²)。在电化学测量中,基于三维镍网络和石墨烯复合泡沫的超级电容器器件在0.5 A/g时展现出100 F/g的高倍率性能,在62.5 A/g时为86.7 F/g,具有良好的循环稳定性,2000次循环后电容保持率为95%,内阻低(1.68 Ω),以及优异的柔性性能。此外,基于电极总质量计算的比电容高达40.9 F/g。我们的工作不仅展示了高质量的石墨烯/镍复合泡沫,还为高性能超级电容器的合理设计提供了一条通用途径。