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Guaiacol as an Organic Superoxide Dismutase Mimics for Anti-ageing a Ru-based Li-rich Layered Oxide Cathode
Authors:Jeongin Lee  Dr Min-Ho Kim  Prof Hosik Lee  Dr Jonghak Kim  Jeongwoo Seo  Prof Hyun-Wook Lee  Dr Chihyun Hwang  Prof Hyun-Kon Song
Institution:1. School of Energy and Chemical Engineering, UNIST, Ulsan, 44919 Korea;2. School of Energy and Chemical Engineering, UNIST, Ulsan, 44919 Korea

Contribution: Resources (supporting);3. Advanced Batteries Research Center, KETI, Seongnam, Gyeonggi, 13509 Korea

Abstract:High-capacity Li-rich layered oxides using oxygen redox as well as transition metal redox suffer from its structural instability due to lattice oxygen escaped from its structure during oxygen redox and the following electrolyte decomposition by the reactive oxygen species. Herein, we rescued a Li-rich layered oxide based on 4d transition metal by employing an organic superoxide dismutase mimics as a homogeneous electrolyte additive. Guaiacol scavenged superoxide radicals via dismutation or disproportionation to convert two superoxide molecules to peroxide and dioxygen after absorbing lithium superoxide on its partially negative oxygen of methoxy and hydroxyl groups. Additionally, guaiacol was decomposed to form a thin and stable cathode-electrolyte interphase (CEI) layer, endowing the cathode with the interfacial stability.
Keywords:Guaiacol  Li2RuO3  Lithium-Rich Layered Oxides  Reactive Oxygen Species  Superoxide Dismutase Mimics
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