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      The rise of electric vehicles—2020 status and future expectations

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          Is Open Access

          The role of renewable energy in the global energy transformation

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            Recycling lithium-ion batteries from electric vehicles

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              A reflection on lithium-ion battery cathode chemistry

              Lithium-ion batteries have aided the portable electronics revolution for nearly three decades. They are now enabling vehicle electrification and beginning to enter the utility industry. The emergence and dominance of lithium-ion batteries are due to their higher energy density compared to other rechargeable battery systems, enabled by the design and development of high-energy density electrode materials. Basic science research, involving solid-state chemistry and physics, has been at the center of this endeavor, particularly during the 1970s and 1980s. With the award of the 2019 Nobel Prize in Chemistry to the development of lithium-ion batteries, it is enlightening to look back at the evolution of the cathode chemistry that made the modern lithium-ion technology feasible. This review article provides a reflection on how fundamental studies have facilitated the discovery, optimization, and rational design of three major categories of oxide cathodes for lithium-ion batteries, and a personal perspective on the future of this important area.
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                Author and article information

                Contributors
                Journal
                Progress in Energy
                Prog. Energy
                IOP Publishing
                2516-1083
                March 25 2021
                April 01 2021
                March 25 2021
                April 01 2021
                : 3
                : 2
                : 022002
                Article
                10.1088/2516-1083/abe0ad
                6880e3fe-c8c7-4593-a3d9-b01b396cf057
                © 2021

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