Department of Physical Science and Technology, Lanzhou University, Lanzhou 730000, China.
Nanoscale. 2013 Oct 7;5(19):8799-820. doi: 10.1039/c3nr02157b. Epub 2013 Aug 12.
Under the background of the quick development of lightweight, flexible, and wearable electronic devices in our society, a flexible and highly efficient energy management strategy is needed for their counterpart energy-storage systems. Among them, flexible electrochemical capacitors (ECs) have been considered as one of the most promising candidates because of their significant advantages in power and energy densities, and unique properties of being flexible, lightweight, low-cost, and environmentally friendly compared with current energy storage devices. In a common EC, carbon materials play an irreplaceable and principal role in its energy-storage performance. Up till now, most progress towards flexible ECs technologies has mostly benefited from the continuous development of carbon materials. As a result, in view of the dual remarkable highlights of ECs and carbon materials, a summary of recent research progress on carbon-based flexible EC electrode materials is presented in this review, including carbon fiber (CF, consisting of carbon microfiber-CMF and carbon nanofiber-CNF) networks, carbon nanotube (CNT) and graphene coatings, CNT and/or graphene papers (or films), and freestanding three-dimensional (3D) flexible carbon-based macroscopic architectures. Furthermore, some promising carbon materials for great potential applications in flexible ECs are introduced. Finally, the trends and challenges in the development of carbon-based electrode materials for flexible ECs and their smart applications are analyzed.
在社会中轻量、灵活和可穿戴电子设备快速发展的背景下,它们对应的储能系统需要一种灵活且高效的能量管理策略。其中,柔性电化学电容器(EC)由于其在功率和能量密度方面的显著优势,以及与当前储能设备相比具有的灵活性、重量轻、低成本和环保等独特性能,被认为是最有前途的候选者之一。在普通的 EC 中,碳材料在其储能性能中起着不可替代和主要的作用。到目前为止,大多数针对柔性 EC 技术的进展主要受益于碳材料的不断发展。因此,鉴于 EC 和碳材料的双重显著亮点,本文综述了近年来基于碳的柔性 EC 电极材料的研究进展,包括碳纤维 (CF,由碳纤维微纤维-CMF 和碳纳米纤维-CNF 组成) 网络、碳纳米管 (CNT) 和石墨烯涂层、CNT 和/或石墨烯纸(或膜)以及独立的三维 (3D) 柔性碳基宏观结构。此外,还介绍了一些在柔性 EC 中有很大应用潜力的有前途的碳材料。最后,分析了用于柔性 EC 的碳基电极材料及其智能应用的发展趋势和挑战。