Electrocatalyzing S Cathodes <i>via</i> Multisulfiphilic Sites for Superior Room-Temperature Sodium-Sulfur Batteries.

Liu, Hanwen; Pei, Wei; Lai, Wei-Hong; Yan, Zichao; Yang, Huiling; Lei, Yaojie; Wang, Yun-Xiao; Gu, Qinfen et al. · ACS Nano · 2020

basic_science · Level V

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Abstract

Room-temperature sodium-sulfur (RT-Na/S) batteries hold great promise for sustainable and cost-effective applications. Nevertheless, it remains a great challenge to achieve high capacity and cycling stability due to the low activity of sulfur and the sluggish conversion kinetics between polysulfide intermediates and sodium sulfide. Herein, an electrocatalyzing S cathode is fabricated, which consists of porous core-shell structure and multisulfiphilic sites. The flexible carbon structure effectively buffers volume changes during cycling and provides enclosed spaces to store S<sub>8</sub> with exceptional conductivity. Significantly, the multisulfiphilic sites (ZnS and CoS<sub>2</sub>) enhance catalysis toward multistep S conversion, which effectively suppresses long-chain polysulfides dissolution and improves the kinetics of short-chain polysulfides. Thus, the obtained S cathodes achieve an enhanced cycling performance (570 mAh g<sup>-1</sup> at 0.2 A g<sup>-1</sup> over 1000 cycles), decent rate capability (250 mAh g<sup>-1</sup> at 1.0 A g<sup>-1</sup> over 2000 cycles), and high energy density of 384 Wh kg<sup>-1</sup> toward practical applications.