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Kwak, Sang Kyu
Kyu’s MolSim Lab @ UNIST
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The Pyridinic-to-Graphitic Conformational Change of Nitrogen of Graphitic Carbon Nitride on Lithium Coordination during Lithium Plating

Author(s)
Jeon, YujuKang, SujinJoo, Se HunPark, Sung OCho, MinjaeKwak, Sang KyuLee, Hyun-WookSong, Hyun-Kon
Issued Date
2019-10-16
URI
https://scholarworks.unist.ac.kr/handle/201301/79127
Fulltext
http://ma.ecsdl.org/content/MA2019-02/2/78.short
Citation
236th ECS meeting
Abstract
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seriously polarized lithium growth during plating leads to the dendritic evolution of lithium metal due to the uneven current distribution on the electrically conductive surface. Artificial protective layers covering electrodes (e.g., polymer film on copper foil) have been used to narrow the gap of the current density between positions on the conductive surface. Herein, we incorporated an active ingredient to attract lithium ions into the dendrite-suppressing layer. Pyridinic nitrogen of graphitic carbon nitride (g-C3N4) served as the lithium ion affinity center. Conformation of the nitrogen was changed from pyridinic to graphitic in the presence of lithium ions, which confirms the coordination of lithium ion to the pyridinic nitrogen. Lithium metal was plated between the g-C3N4 layer and the copper current collector (or the lithium metal). The homogeneous lithium nucleation expected from the active role of the pyridinic nitrogen on regulating ionic pathways suppressed the dendritic growth of lithium metal and decreased the overpotential required for the initial metal nucleation. Due to the top-down ion flux regulation on the uppermost surface (or tip) of lithium metal, the reversibility of lithium plating/stripping was dramatically improved.
Publisher
The Electrochemical Society

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