Mid Sweden University, Department of Natural Sciences, Sundsvall, SE-851 70, Sweden.
STT Emtec AB, Sundsvall, SE-852 29, Sweden.
Sci Rep. 2017 Jan 5;7:39836. doi: 10.1038/srep39836.
Electric double-layer capacitors (EDLCs) or supercapacitors (SCs) are fast energy storage devices with high pulse efficiency and superior cyclability, which makes them useful in various applications including electronics, vehicles and grids. Aqueous SCs are considered to be more environmentally friendly than those based on organic electrolytes. Because of the corrosive nature of the aqueous environment, however, expensive electrochemically stable materials are needed for the current collectors and electrodes in aqueous SCs. This results in high costs for a given energy-storage capacity. To address this, we developed a novel low-cost aqueous SC using graphite foil as the current collector and a mix of graphene, nanographite, simple water-purification carbons and nanocellulose as electrodes. The electrodes were coated directly onto the graphite foil by using casting frames and the SCs were assembled in a pouch cell design. With this approach, we achieved a material cost reduction of greater than 90% while maintaining approximately one-half of the specific capacitance of a commercial unit, thus demonstrating that the proposed SC can be an environmentally friendly, low-cost alternative to conventional SCs.
双电层电容器 (EDLCs) 或超级电容器 (SCs) 是具有高脉冲效率和卓越循环性能的快速储能设备,这使得它们在电子、车辆和电网等各种应用中非常有用。与基于有机电解质的超级电容器相比,水系超级电容器被认为更环保。然而,由于水相环境的腐蚀性,水系超级电容器的集流器和电极需要使用昂贵的电化学稳定材料,这导致给定储能容量的成本很高。为了解决这个问题,我们开发了一种新型的低成本水系超级电容器,使用石墨箔作为集流器,将石墨烯、纳米石墨、简单的水净化碳和纳米纤维素混合作为电极。通过使用浇铸框架将电极直接涂覆在石墨箔上,并采用袋式电池设计组装超级电容器。通过这种方法,我们在保持约一半商用单元比电容的同时,将材料成本降低了 90%以上,从而证明了所提出的超级电容器可以作为传统超级电容器的环保、低成本替代品。