High-Energy and Long-Lifespan Potassium-Sulfur Batteries Enabled by Concentrated Electrolyte

  • Lee, Suyeong
  • Park, Hyeona
  • Rizell, Josef
  • Kim, Un-Hyuck
  • Liu, Yangyang
  • ... Sun, Yang-Kook
  • 외 7명
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초록

Potassium-sulfur (K-S) batteries are emerging as low-cost and high-capacity energy-storage technology. However, conventional K-S batteries suffer from two critical issues that have not yet been successfully resolved: the dissolution of potassium polysulfides (KPS) into the liquid electrolyte and the formation of K dendrites on the K metal anode, which lead to inadequate cycling efficiencies with a low reversible capacity. Herein, a high-capacity and long cycle-life K-S battery consisting of a highly concentrated electrolyte (HCE) (4.34 mol kg(-1) potassium bis(fluorosulfonyl)imide in a 1,2-Dimethoxyethane) and a sulfurized polyacrylonitrile (SPAN) cathode is presented The application of a HCE efficiently suppresses the dendritic growth of K, as evidenced by operando optical imaging and phase field modeling, owing to the reduced K-ion depletion on the electrode surface and a uniform Faradaic current density over the K metal anode surface. Additionally, because S is covalently bonded to the C backbone of PAN in the SPAN structure, the SPAN cathode inhibits the dissolution of KPS. These features generate synergy that the proposed K-S battery can provide a practical areal capacity of 2.5 mAh cm(-2) and unprecedented lifetimes with high Coulombic efficiencies over 700 cycles.

키워드

concentrated electrolytesdendrite-freehigh areal capacitiespotassium-sulfur batteriesSPAN cathodesIN-SITU FORMATIONLITHIUMMETALCARBONCATHODECOBALTSAFETYWATER
제목
High-Energy and Long-Lifespan Potassium-Sulfur Batteries Enabled by Concentrated Electrolyte
저자
Lee, SuyeongPark, HyeonaRizell, JosefKim, Un-HyuckLiu, YangyangXu, XieyuXiong, ShizhaoMatic, AleksandarZikri, Adi TiaraKang, HyokyeongSun, Yang-KookKim, JaekookHwang, Jang-Yeon
DOI
10.1002/adfm.202209145
발행일
2022-11
유형
Article; Early Access
저널명
Advanced Materials for Optics and Electronics
32
46
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