<i>In Situ</i> Alloying Strategy for Exceptional Potassium Ion Batteries

  • Jue Wang (58890)
  • Ling Fan (2215240)
  • Zhaomeng Liu (5570519)
  • Suhua Chen (5141633)
  • Qingfeng Zhang (89642)
  • Longlu Wang (4714914)
  • Hongguan Yang (5141639)
  • Xinzhi Yu (1924435)
  • Bingan Lu (1971403)
Publication date
March 2019
Publisher
American Chemical Society (ACS)

Abstract

We report an in situ alloying strategy for obtaining homogeneous (Bi,Sb) alloy nanoparticles from (Bi,Sb)2S3 nanotubes for the exceptional anode of potassium ion batteries (KIBs). The operando X-ray diffraction results, along with transmission electron microscopy and energy-dispersive X-ray spectroscopy mappings, successfully reveal the phase evolution of this material, which is (Bi,Sb)2S3 → (Bi,Sb) → K­(Bi,Sb) → K3(Bi,Sb) during the initial discharge and K3(Bi,Sb) → K­(Bi,Sb) → (Bi,Sb) in the charging process. The in situ alloying strategy produces a synergistic effect and brings an outstanding electrochemical performance. It achieves ultrahigh discharge capacities of 611 mAh g–1 at 100 mA g–1 (0.135C) and 300 mAh g–1 at 1000 mA g–1 (1.35C...

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