Key Laboratory for Anisotropy and Texture of Materials of Ministry of Education, Northeastern University, Shenyang, Liaoning 110004, China.
Small. 2012 Feb 6;8(3):452-9. doi: 10.1002/smll.201101719. Epub 2011 Dec 8.
Flexible graphene paper (GP) pillared by carbon black (CB) nanoparticles using a simple vacuum filtration method is developed as a high-performance electrode material for supercapacitors. Through the introduction of CB nanoparticles as spacers, the self-restacking of graphene sheets during the filtration process is mitigated to a great extent. The pillared GP-based supercapacitors exhibit excellent electrochemical performances and cyclic stabilities compared with GP without the addition of CB nanoparticles. At a scan rate of 10 mV s(-1) , the specific capacitance of the pillared GP is 138 F g(-1) and 83.2 F g(-1) with negligible 3.85% and 4.35% capacitance degradation after 2000 cycles in aqueous and organic electrolytes, respectively. At an extremely fast scan rate of 500 mV s (-1) , the specific capacitance can reach 80 F g(-1) in aqueous electrolyte. No binder is needed for assembling the supercapacitor cells and the pillared GP itself may serve as a current collector due to its intrinsic high electrical conductivity. The pillared GP has great potential in the development of promising flexible and ultralight-weight supercapacitors for electrochemical energy storage.
采用简单的真空过滤方法,将柔性石墨烯纸(GP)柱撑在炭黑(CB)纳米粒子上,制备了一种用于超级电容器的高性能电极材料。通过引入 CB 纳米粒子作为间隔物,在过滤过程中极大地减轻了石墨烯片的自堆叠。与未添加 CB 纳米粒子的 GP 相比,基于柱撑 GP 的超级电容器表现出优异的电化学性能和循环稳定性。在扫描速率为 10 mV s(-1)时,柱撑 GP 的比电容分别为 138 F g(-1)和 83.2 F g(-1),在水相和有机电解液中经过 2000 次循环后,电容分别有 3.85%和 4.35%的微小衰减。在极快的扫描速率 500 mV s(-1)时,在水相电解液中的比电容可达 80 F g(-1)。组装超级电容器电池不需要使用粘结剂,并且由于其固有的高导电性,柱撑 GP 本身可用作集流器。该柱撑 GP 在开发用于电化学储能的有前途的柔性和超轻重量超级电容器方面具有很大的潜力。