π-π stacking of unsaturated sulfonates on natural graphite enables a green and cost-effective cathode for high-voltage dual-ion batteries

A sustainable and cost-effective energy storage system is the research focus at present and also the development direction of the future. A green and cost-effective cathode material for high-voltage dual-ion batteries (DIBs) is presented in this work through the artificial implantation of unsaturate...

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Veröffentlicht in:Green chemistry : an international journal and green chemistry resource : GC 2023-10, Vol.25 (21), p.877-8777
Hauptverfasser: Zhang, Kejia, Li, Decheng, Qu, Qunting, Shao, Jie, Jiang, Yu, Lv, Linze, Lin, Ziyang, Zheng, Honghe
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Sprache:eng
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Zusammenfassung:A sustainable and cost-effective energy storage system is the research focus at present and also the development direction of the future. A green and cost-effective cathode material for high-voltage dual-ion batteries (DIBs) is presented in this work through the artificial implantation of unsaturated organic sulfonates on the surface of natural graphite (NG) particles via a low-cost and green synthesis route. It is interesting to discover and validate that π-π stacking interactions exist between the π-bonds of unsaturated sulfonates and graphite layers through both practical experiments and density functional theory simulations. The C&z.tbd;C bond-containing propyne sulfonate (PyS) exhibits stronger π-π stacking interactions on graphite layers than the C&z.dbd;C bond-containing allyl sulfonate and C-C bond-containing propane sulfonate. The PyS layer works as an artificial and highly stable cathode/electrolyte interphase (CEI), which effectively precludes electrolyte decomposition, reduces interfacial resistance and protects the NG cathode from structural degradation. The as-prepared NG@PyS exhibits outstanding cycling performance as the cathode material of DIBs by virtue of the high adhesion capability of PyS on graphite. A green and cost-effective material for dual-ion batteries is obtained by virtue of π-π stacking between unsaturated sulfonates and graphite.
ISSN:1463-9262
1463-9270
DOI:10.1039/d3gc01802d