Catalytic Pyroprotein Seed Layers for Sodium Metal Anodes

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초록

We report a pyroprotein seed layer (PSL, similar to 100 nm in thickness)-coated Cu foil electrode (PSL-Cu) demonstrating highly reversible Na metal storage behavior with a mean Coulombic efficiency (CE) of similar to 99.96% over 300 cycles in a glyme-based electrolyte. Via a synergistic effect with the electrolyte, the carbonaceous thin film containing numerous nucleophilic active sites guides the homogeneous Na metal deposition/stripping process with the formation of numerous catalytic seeds, resulting in remarkably stable cycling and a low Na metal nucleation overpotential of similar to 10 mV. In addition, the CE deviation values of the PSL-Cu electrode were similar to 0.43% in several cell tests, demonstrating its reliable cycling behavior with low cell-to-cell variation. The practicality of PSL-Cu was further demonstrated via full-cell experiments with a polyanion cathode, in which it achieved a high specific power density and energy density of 3,800 W kg(-1) and similar to 402 W h kg(-1), respectively. This work provides a simple process for the fabrication of a Na metal anode.

키워드

pyroproteincarbon thin filmcatalytic seed layermetal anodesodium-ion batteriesION BATTERIESHIGH-CAPACITYCARBON ELECTRODESNANOPARTICLESNUCLEATIONLIFE
제목
Catalytic Pyroprotein Seed Layers for Sodium Metal Anodes
저자
Lee, Min EuiKwak, Hyo WonKwak, Jin HwanJin, Hyoung-JoonYun, Young Soo
DOI
10.1021/acsami.8b15938
발행일
2019-04-03
유형
Article
저널명
ACS Applied Materials and Interfaces
11
13
페이지
12401 ~ 12407