Ito Hiroshi, Murata Tsuyoshi, Fujisaki Megumi, Tsuji Ryotaro, Morita Yasushi
Department of Applied Chemistry, Faculty of Engineering, Aichi Institute of Technology, Yachigusa, 1247, Yakusa, Toyota, Aichi, Japan.
Material Solutions New Research Engine, KANEKA Corporation, Techno-Alliance Building, Osaka University, Yamadaoka 2-8, Suita, Osaka, Japan.
ChemSusChem. 2021 Mar 5;14(5):1377-1387. doi: 10.1002/cssc.202002851. Epub 2021 Jan 27.
Owing to an increasing demand on high performance and rare-metal free energy storage systems, organic rechargeable battery has attracted much attention. To increase the capacity of the whole battery, we have fabricated coin-type buckypaper cells composed of a trioxotriangulene neutral radical derivative (H TOT) and single-walled carbon nanotubes as a cathode and lithium metal plate as an anode without current collector. The cells exhibited a stable charge-discharge behavior even at a 90 wt % H TOT content with a high-rate performance of 10 C originating from high electrical conductivity of H TOT. Furthermore, based on the four-stage redox ability of H TOT, the H TOT 90 wt % cathode showed a high capacity of approximately 260 mAh g and a high energy density of 546 Wh g . In view of the simple fabrication of the cathode and excellent performance, TOT-based buckypaper will open a new strategy for the flexible cells for next-generation energy storages.
由于对高性能和无稀有金属储能系统的需求不断增加,有机可充电电池备受关注。为了提高整个电池的容量,我们制备了硬币型巴基纸电池,该电池由三氧代三苯并环丁二烯中性自由基衍生物(H TOT)和单壁碳纳米管作为阴极,锂金属板作为阳极,且没有集流体。即使在H TOT含量为90 wt %时,这些电池仍表现出稳定的充放电行为,源于H TOT的高电导率,其具有10 C的高倍率性能。此外,基于H TOT的四阶段氧化还原能力,90 wt %的H TOT阴极显示出约260 mAh g的高容量和546 Wh g的高能量密度。鉴于阴极制备简单且性能优异,基于TOT的巴基纸将为下一代储能的柔性电池开辟新策略。