Abstract
Xi Han, Shengnan He, Yufa Zhou, Yaxin Pu, Shaowu Lai, Xu Xue, Jiantuo Gan, Zhijun Wu, Fulai Qi, Yanxia Liu, Mingchang Zhang, Yaxiong Yang, Wubin Du
Abstract
Authors
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Research and development of advanced battery materials in China
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Institutions
Provenance
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Confidence 100%
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Confidence 95%
datacite
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Spinel nanodomains relieve strain and stabilize lattice oxygen in ultrahigh-nickel zero-cobalt cathodes
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In situ constructed spinel layer stabilized upcycled LiCoO2 for high performance lithium-ion batteries
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Constructing epitaxial lattice matching rock-salt interface toward high structural adaptability for lithium-rich manganese-based oxides
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Addressing the high-voltage structural and electrochemical instability of ni-containing layered transition metal (tm) oxide cathodes by “blocking” the “tm-migration” pathway in the lattice
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Zr/Ti trace co-doping induced disordered structure to enhance the cycling stability of Li-rich Mn-based layered oxide cathodes
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A simple gas–solid treatment for surface modification of Li-rich oxides cathodes
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Cationic–anionic redox couple gradient to immunize against irreversible processes of Li-rich layered oxides
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Manipulating the local electronic structure in Li-rich layered cathode towards superior electrochemical performance
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The structural and chemical origin of the oxygen redox activity in layered and cation-disordered Li-excess cathode materials
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Surface nitridation of Si enabled gradient artificial solid electrolyte interface and self-optimized structural evolution
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Li-rich oxide micro-bricks with exposed {010} planes to construct ultrahigh-compaction hierarchical cathodes for Li-ion batteries
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Hollow microspherical Li [Li0. 24Ni0. 38Mn0. 38] O2 as cathode material for lithium-ion batteries with excellent electrochemical performance
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Preparation of Li2MnO3 nanowires with structural defects as high rate and high capacity cathodes for lithium-ion batteries
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Manipulation of transition metal migration via Cr-doping for better-performance Li-rich, Co-free cathodes
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