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Extremely Durable K-Ion Batteries Enabled by Heteroatom Co-Doped Highly-Ordered Porous Carbon Spheres with Nearly 100% Capacity Retention up to 11,000 Cycles.

Yanqing FuXiang ShenJuan YouRuizhi YuJinju ZhengBing WuZdeněk SoferQiliang WeiWeiyou Yang
Published in: Nano letters (2024)
Currently, one major target for exploring K-ion batteries (KIBs) is enhancing their cycle stability due to the intrinsically sluggish kinetics of large-radius K + ions. Herein, we report a rationally designed electrode, the S/O co-doped hard carbon spheres with highly ordered porous characteristics (SPC), for extremely durable KIBs. Experimental results and theory calculations confirm that this structure offers exceptional advantages for high-performance KIBs, facilitating rapid K + diffusion and (de)-intercalation, efficient electrolyte penetration and transport, improved K + storage sites, and enhanced redox reaction kinetics, thus ensuring the long-term cycle stability. As a result, the as-constructed SPC anode delivers a high reversible capacity of ca. 200 mAh g -1 at a high current density of 2.0 A g -1 and robust stability with ∼100% capacity retention up to 11,000 cycles, outperforming most carbon-based KIB anodes. This work offers insight into developing advanced KIBs with durable stability toward practical applications.
Keyphrases
  • ion batteries
  • quantum dots
  • metal organic framework
  • highly efficient
  • molecular dynamics simulations
  • molecular dynamics
  • density functional theory
  • carbon nanotubes
  • loop mediated isothermal amplification