High-Power and Large-Area Anodes for Safe Lithium-Metal Batteries

  • Ha, Son
  • Park, Ji Yong
  • Huh, Sung-Ho
  • Yu, Seung-Ho
  • Kwak, Jin Hwan
  • ... Lim, Hee-Dae
  • 외 6명
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초록

The lithium deposited via the complex electrochemical heterogeneous lithium deposition reaction (LDR) process on a lithium foil-based anode (LFA) forms a high-aspect-ratio shape whenever the reaction kinetics reach its limit, threatening battery safety. Thereby, a research strategy that boosts the LDR kinetics is needed to construct a high-power and safe lithium metal anode. In this study, the kinetic limitations of the LDR process on LFA are elucidated through operando and ex situ observations using in-depth electrochemical analyses. In addition, ultra-thin (≈0.5 µm) and high modulus (≥19 GPa) double-walled carbon nanotube (DWNT) membranes with different surface properties are designed to catalyze high-safety LDRs. The oxygen-functionalized DWNT membranes introduced on the LFA top surface simultaneously induce multitudinous lithium nuclei, leading to film-like lithium deposition even at a high current density of 20 mA cm−2. More importantly, the layer-by-layer assembly of the oxygen-functionalized and pristine DWNT membranes results in different surface energies between the top and bottom surfaces, enabling selective surface LDRs underneath the high-modulus bilayer membranes. The protective LDR on the bilayer-covered LFA guarantees an invulnerable cycling process in large-area pouch cells at high current densities for more than 1000 cycles, demonstrating the practicability of LFA in a conventional liquid electrolyte system.

키워드

double-walled carbon nanotube (DWNT)heterogeneous lithium deposition reaction (LDR)large-area lithium metal anodeprotective bilayerselective surface lithium depositionINTERPHASE
제목
High-Power and Large-Area Anodes for Safe Lithium-Metal Batteries
저자
Ha, SonPark, Ji YongHuh, Sung-HoYu, Seung-HoKwak, Jin HwanPark, JungjinLim, Hee-DaeAhn, Dong JuneJin, Hyoung-JoonLim, Hyung-KyuYang, Seung JaeYun, Young Soo
DOI
10.1002/smll.202400638
발행일
2024-09
유형
Article in press
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