An electron-deficient carbon current collector for anode-free Li-metal batteries

Электронодефицитный углеродный токосъёмник для безанодных литий-металлических аккумуляторов
Hyeokjin Kwon, Ju‐Hyuk Lee, Youngil Roh, Jaewon Baek, Dong Jae Shin, Jong Keon Yoon, Hoe Jin Ha, Je Young Kim, Hee‐Tak Kim
2021-09-20

anode-free Li-metal batterieselectron-deficient carbon current collectormultivacancy defectssolid electrolyte interphaseuniform lithium deposition
Abstract The long-term cycling of anode-free Li-metal cells (i.e., cells where the negative electrode is in situ formed by electrodeposition on an electronically conductive matrix of lithium sourced from the positive electrode) using a liquid electrolyte is affected by the formation of an inhomogeneous solid electrolyte interphase (SEI) on the current collector and irregular Li deposition. To circumvent these issues, we report an atomically defective carbon current collector where multivacancy defects induce homogeneous SEI formation on the current collector and uniform Li nucleation and growth to obtain a dense Li morphology. Via simulations and experimental measurements and analyses, we demonstrate the beneficial effect of electron deficiency on the Li hosting behavior of the carbon current collector. Furthermore, we report the results of testing anode-free coin cells comprising a multivacancy defective carbon current collector, a Li x Ni 0.8 Co 0.1 Mn 0.1 -based cathode and a nonaqueous Li-containing electrolyte solution. These cells retain 90% of their initial capacity for over 50 cycles under lean electrolyte conditions.
1
An atomically defective carbon current collector with multivacancy defects promotes homogeneous SEI formation and uniform lithium nucleation.
2
Anode-free coin cells using the defective carbon collector and Li x Ni 0.8 Co 0.1 Mn 0.1-based cathode retained 90% of initial capacity for over 50 cycles under lean-electrolyte conditions.
3
Electron deficiency improves the carbon current collector’s lithium-hosting behavior, producing dense and regular lithium deposition morphology.
4
Simulations and experimental analyses demonstrate the beneficial role of electron-deficient multivacancy carbon in regulating lithium deposition.

anode-free Li-metal cells with a multivacancy-defective carbon current collector

the effect of electron deficiency and multivacancy defects on SEI homogeneity, Li nucleation and growth, Li morphology, and cycling performance

Publication Details
Publication Date
2021-09-20
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Authors
Hyeokjin Kwon
Ju‐Hyuk Lee
Youngil Roh
Jaewon Baek
Dong Jae Shin
Jong Keon Yoon
Hoe Jin Ha
Je Young Kim
Hee‐Tak Kim
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