Composite lithium metal anode by melt infusion of lithium into a 3D conducting scaffold with lithiophilic coating
Композитный литиевый металлический анод, полученный методом пропитки расплавом лития трёхмерного проводящего каркаса с литофильным покрытием
2016-02-29
SCID: 54.1/9cy2fyb5
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3D porous carbon scaffolddendritic growthlithiophilic coatinglithium metal anodemelt infusion
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Abstract (AI)
Lithium metal-based battery is considered one of the best energy storage systems due to its high theoretical capacity and lowest anode potential of all. However, dendritic growth and virtually relative infinity volume change during long-term cycling often lead to severe safety hazards and catastrophic failure. Here, a stable lithium-scaffold composite electrode is developed by lithium melt infusion into a 3D porous carbon matrix with "lithiophilic" coating. Lithium is uniformly entrapped on the matrix surface and in the 3D structure. The resulting composite electrode possesses a high conductive surface area and excellent structural stability upon galvanostatic cycling. We showed stable cycling of this composite electrode with small Li plating/stripping overpotential (<90 mV) at a high current density of 3 mA/cm(2) over 80 cycles.
Key Findings
1
A stable lithium–scaffold composite anode was developed by melt-infusing lithium into a three-dimensional porous carbon matrix coated with a lithiophilic layer.
2
The composite electrode provides high conductive surface area and maintains excellent structural stability during galvanostatic cycling.
3
The electrode achieved stable lithium plating/stripping with overpotential below 90 mV at 3 mA/cm² for more than 80 cycles.
4
The lithiophilic coating enables lithium to become uniformly distributed on the scaffold surface and throughout its three-dimensional structure.
Research Object
Lithium metal–3D porous carbon scaffold composite electrode with a lithiophilic coating
Research Subject
Electrochemical cycling stability, Li plating/stripping overpotential, and structural stability enabled by uniform melt infusion of lithium into the lithiophilic 3D scaffold
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2016-02-29
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