Department of Materials Science , Fudan University , Shanghai 200433 , P. R. China.
ACS Appl Mater Interfaces. 2018 Apr 25;10(16):13606-13613. doi: 10.1021/acsami.8b02506. Epub 2018 Apr 11.
Pseudocapacitance plays an important role in high-power lithium-ion batteries (LIBs). However, it is still lack of effective methods to tailor the pseudocapacitance contribution in electrode materials for LIBs. Herein, pseudocapacitance tuned by the strength of C-S bonding has been rendered in WS nanorods anchored on the N,S codoped three-dimensional graphene hybrid (WS@N,S-3DG) for the first time. The pseudocapacitive contributions in the charge storage can be enhanced effectively with the increased strength of C-S bonding. As expected, the enhanced extrinsic pseudocapacitance makes WS@N,S-3DG a fascinating electrode material for high-power LIBs, with a high reversible capacity of 509 mA h g over 500 cycles at a current density as high as 2 A g. These encouraging results of pseudocapacitance tailored by chemical bonding provide new opportunities for designing advanced electrode materials.
赝电容在高功率锂离子电池(LIBs)中起着重要作用。然而,对于 LIBs 电极材料中赝电容贡献的调控仍然缺乏有效的方法。在此,首次在锚定在 N,S 共掺杂三维石墨烯杂化材料(WS@N,S-3DG)上的 WS 纳米棒中通过 C-S 键的强度来调变赝电容。随着 C-S 键强度的增加,可以有效地增强电荷存储中的赝电容贡献。不出所料,增强的外赝电容使得 WS@N,S-3DG 成为一种用于高功率 LIBs 的极具吸引力的电极材料,在高达 2 A g 的电流密度下,经过 500 次循环后,具有 509 mA h g 的高可逆容量。通过化学键合调变赝电容的这些令人鼓舞的结果为设计先进的电极材料提供了新的机会。