State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou, Fujian 350002, China.
Nanomaterials and Chemistry Key Laboratory, Wenzhou University , Wenzhou 325027, China.
ACS Nano. 2017 Aug 22;11(8):8488-8498. doi: 10.1021/acsnano.7b04442. Epub 2017 Aug 1.
Lithium-sulfur batteries practically suffer from short cycling life, low sulfur utilization, and safety concerns, particularly at ultrahigh rates and high sulfur loading. To address these problems, we have designed and synthesized a ternary NbS@S@IG composite consisting of sandwich-type NbS@S enveloped by iodine-doped graphene (IG). The sandwich-type structure provides an interconnected conductive network and plane-to-point intimate contact between layered NbS (or IG) and sulfur particles, enabling sulfur species to be efficiently entrapped and utilized at ultrahigh rates, while the structural integrity is well maintained. NbS@S@IG exhibits prominent high-power charge/discharge performances. Reversible capacities of 195, 107, and 74 mA h g (1.05 mg cm) have been achieved after 2000 cycles at ultrahigh rates of 20, 30, and 40 C, respectively, and the corresponding average decay rates per cycle are 0.022%, 0.031% and 0.033%, respectively. When the area sulfur loading is increased to 3.25 mg cm, the electrode still maintains a high discharge capacity of 405 mAh g after 600 cycles at 1 C. Three half-cells in series assembled with NbS@S@IG can drive 60 indicators of LED modules after only 18 s of charging. The instantaneous current and power of the device reach 196.9 A g and 1369.7 W g, respectively.
锂硫电池实际上存在循环寿命短、硫利用率低和安全问题等问题,尤其是在超高倍率和高硫载量下。为了解决这些问题,我们设计并合成了一种由三明治型 NbS@S 包裹碘掺杂石墨烯(IG)组成的三元 NbS@S@IG 复合材料。三明治结构提供了互连的导电网络和层状 NbS(或 IG)与硫颗粒之间的面到点的紧密接触,使硫物种能够在超高倍率下有效地被捕获和利用,同时保持结构的完整性。NBs@S@IG 表现出突出的高功率充放电性能。在超高倍率 20、30 和 40 C 下经过 2000 次循环后,分别实现了 195、107 和 74 mA h g(1.05 mg cm)的可逆容量,相应的每个循环的平均衰减率分别为 0.022%、0.031%和 0.033%。当面积硫载量增加到 3.25 mg cm 时,电极在 1 C 下经过 600 次循环仍保持 405 mAh g 的高放电容量。三个串联的 NbS@S@IG 半电池仅在 18 s 的充电后即可驱动 60 个 LED 模块的指示灯。该器件的瞬时电流和功率分别达到 196.9 A g 和 1369.7 W g。