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      Recent advances and perspectives on thin electrolytes for high-energy-density solid-state lithium batteries

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          Abstract

          This review summarizes the recent progress of thin solid-state electrolytes for high energy-density solid-state lithium batteries.

          Abstract

          Solid-state lithium batteries (SSLBs) are promising next-generation energy storage devices due to their potential for high energy density and improved safety. The properties and physical parameters of the solid-state electrolyte (SSE), as a critical component of the battery, have a significant effect on the electrochemical performance and energy density. In recent years, thick SSEs have been widely used in SSLBs but present several drawbacks in terms of increased internal resistance, additional inactive material content, low practical energy densities, and higher battery manufacturing costs. Reducing the thickness of SSEs and developing high-performance thin SSE-based SSLBs are essential for the commercialization of SSLBs. In this review, we comprehensively summarize the fabrication methods of thin SSEs, their rational design, and their manufacturing processes and applications in different SSLB systems. Moreover, advanced characterization techniques for understanding the Li + transport kinetics and structural evolution of SSEs at the interface are introduced. Additionally, the gravimetric/volumetric energy densities for various SSLB pouch cells with SSEs less than 100 μm thick are evaluated. Lastly, other cell design parameters are tuned to achieve gravimetric/volumetric energy densities over 300 W h kg −1/500 W h L −1, and the future directions of thin SSEs in SSLBs are speculated upon.

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          Most cited references150

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          Issues and challenges facing rechargeable lithium batteries.

          Technological improvements in rechargeable solid-state batteries are being driven by an ever-increasing demand for portable electronic devices. Lithium-ion batteries are the systems of choice, offering high energy density, flexible and lightweight design, and longer lifespan than comparable battery technologies. We present a brief historical review of the development of lithium-based rechargeable batteries, highlight ongoing research strategies, and discuss the challenges that remain regarding the synthesis, characterization, electrochemical performance and safety of these systems.
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            Nonaqueous liquid electrolytes for lithium-based rechargeable batteries.

            Kang Xu (2004)
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              Lithium battery chemistries enabled by solid-state electrolytes

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                Author and article information

                Contributors
                Journal
                EESNBY
                Energy & Environmental Science
                Energy Environ. Sci.
                Royal Society of Chemistry (RSC)
                1754-5692
                1754-5706
                February 23 2021
                2021
                : 14
                : 2
                : 643-671
                Affiliations
                [1 ]Department of Mechanical and Materials Engineering
                [2 ]University of Western Ontario
                [3 ]London
                [4 ]Canada
                Article
                10.1039/D0EE02714F
                df202abe-ba1b-44bd-8409-c600dd3a3964
                © 2021

                http://rsc.li/journals-terms-of-use

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