Wu Zhong, Li Lin, Yan Jun-Min, Zhang Xin-Bo
State Key Laboratory of Rare Earth Resource Utilization Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun 130022 China.
University of Chinese Academy of Sciences Beijing 100049 China.
Adv Sci (Weinh). 2017 Feb 3;4(6):1600382. doi: 10.1002/advs.201600382. eCollection 2017 Jun.
With the development of renewable energy and electrified transportation, electrochemical energy storage will be more urgent in the future. Supercapacitors have received extensive attention due to their high power density, fast charge and discharge rates, and long-term cycling stability. During past five years, supercapacitors have been boomed benefited from the development of nanostructured materials synthesis and the promoted innovation of devices construction. In this review, we have summarized the current state-of-the-art development on the fabrication of high-performance supercapacitors. From the electrode material perspective, a variety of materials have been explored for advanced electrode materials with smart material-design strategies such as carbonaceous materials, metal compounds and conducting polymers. Proper nanostructures are engineered to provide sufficient electroactive sites and enhance the kinetics of ion and electron transport. Besides, new-concept supercapacitors have been developed for practical application. Microsupercapacitors and fiber supercapacitors have been explored for portable and compact electronic devices. Subsequently, we have introduced Li-/Na-ion supercapacitors composed of battery-type electrodes and capacitor-type electrode. Integrated energy devices are also explored by incorporating supercapacitors with energy conversion systems for sustainable energy storage. In brief, this review provides a comprehensive summary of recent progress on electrode materials design and burgeoning devices constructions for high-performance supercapacitors.
随着可再生能源和电动交通的发展,电化学储能在未来将变得更加迫切。超级电容器因其高功率密度、快速充放电速率和长期循环稳定性而受到广泛关注。在过去五年中,得益于纳米结构材料合成技术的发展和器件构造的创新推动,超级电容器蓬勃发展。在本综述中,我们总结了高性能超级电容器制造方面的当前最新进展。从电极材料的角度来看,人们已经探索了多种材料作为先进电极材料,并采用了智能材料设计策略,如碳质材料、金属化合物和导电聚合物。通过设计合适的纳米结构来提供足够的电活性位点,并增强离子和电子传输的动力学。此外,还开发了用于实际应用的新概念超级电容器。已经探索了微型超级电容器和纤维超级电容器用于便携式和紧凑型电子设备。随后,我们介绍了由电池型电极和电容器型电极组成的锂/钠离子混合电容器。还通过将超级电容器与能量转换系统相结合来探索集成能源装置,以实现可持续的能量存储。简而言之,本综述全面总结了高性能超级电容器在电极材料设计和新兴器件构造方面的最新进展。