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      Biomacromolecules enabled dendrite-free lithium metal battery and its origin revealed by cryo-electron microscopy

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          Abstract

          Metallic lithium anodes are highly promising for revolutionizing current rechargeable batteries because of their ultrahigh energy density. However, the application of lithium metal batteries is considerably impeded by lithium dendrite growth. Here, a biomacromolecule matrix obtained from the natural membrane of eggshell is introduced to control lithium growth and the mechanism is motivated by how living organisms regulate the orientation of inorganic crystals in biomineralization. Specifically, cryo-electron microscopy is utilized to probe the structure of lithium at the atomic level. The dendrites growing along the preferred < 111 > crystallographic orientation are greatly suppressed in the presence of the biomacromolecule. Furthermore, the naturally soluble chemical species in the biomacromolecules can participate in the formation of solid electrolyte interphase upon cycling, thus effectively homogenizing the lithium deposition. The lithium anodes employing bioinspired design exhibit enhanced cycling capability. This work sheds light on identifying substantial challenges in lithium anodes for developing advanced batteries.

          Abstract

          Inspired by the role of proteins in regulating eggshell mineralization, here Tao, Liu and colleagues apply trifluoroethanol modified eggshell membrane to combat lithium dendrite. Cryo-electron microscopy reveals that the growth along the most favored crystallographic direction is suppressed.

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          Generalized Gradient Approximation Made Simple

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            Toward Safe Lithium Metal Anode in Rechargeable Batteries: A Review.

            The lithium metal battery is strongly considered to be one of the most promising candidates for high-energy-density energy storage devices in our modern and technology-based society. However, uncontrollable lithium dendrite growth induces poor cycling efficiency and severe safety concerns, dragging lithium metal batteries out of practical applications. This review presents a comprehensive overview of the lithium metal anode and its dendritic lithium growth. First, the working principles and technical challenges of a lithium metal anode are underscored. Specific attention is paid to the mechanistic understandings and quantitative models for solid electrolyte interphase (SEI) formation, lithium dendrite nucleation, and growth. On the basis of previous theoretical understanding and analysis, recently proposed strategies to suppress dendrite growth of lithium metal anode and some other metal anodes are reviewed. A section dedicated to the potential of full-cell lithium metal batteries for practical applications is included. A general conclusion and a perspective on the current limitations and recommended future research directions of lithium metal batteries are presented. The review concludes with an attempt at summarizing the theoretical and experimental achievements in lithium metal anodes and endeavors to realize the practical applications of lithium metal batteries.
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              Pathways for practical high-energy long-cycling lithium metal batteries

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                Author and article information

                Contributors
                yujingliu@zjut.edu.cn
                tao@zjut.edu.cn
                Journal
                Nat Commun
                Nat Commun
                Nature Communications
                Nature Publishing Group UK (London )
                2041-1723
                24 January 2020
                24 January 2020
                2020
                : 11
                : 488
                Affiliations
                [1 ]ISNI 0000 0004 1761 325X, GRID grid.469325.f, College of Materials Science and Engineering, , Zhejiang University of Technology, ; Hangzhou, 310014 China
                [2 ]ISNI 0000 0001 2314 964X, GRID grid.41156.37, Key Laboratory of Mesoscopic Chemistry of MOE, School of Chemistry and Chemical Engineering, , Nanjing University, ; Nanjing, 210093 China
                [3 ]ISNI 0000 0004 1759 700X, GRID grid.13402.34, Center of Electron Microscope, State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, , Zhejiang University, ; Hangzhou, 310027 China
                Author information
                http://orcid.org/0000-0001-9681-5498
                http://orcid.org/0000-0002-3995-2776
                http://orcid.org/0000-0001-8860-8579
                http://orcid.org/0000-0003-2108-3100
                http://orcid.org/0000-0002-9429-5983
                Article
                14358
                10.1038/s41467-020-14358-1
                6981142
                31980618
                393936a1-0d72-4123-b67e-a3f45fa60a44
                © The Author(s) 2020

                Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.

                History
                : 29 August 2019
                : 2 January 2020
                Funding
                Funded by: FundRef https://doi.org/10.13039/501100001809, National Natural Science Foundation of China (National Science Foundation of China);
                Award ID: 51722210
                Award ID: 51972285
                Award ID: 21902144
                Award Recipient :
                Funded by: FundRef https://doi.org/10.13039/501100004731, Natural Science Foundation of Zhejiang Province (Zhejiang Provincial Natural Science Foundation);
                Award ID: LY17E020010
                Award ID: LD18E020003
                Award Recipient :
                Categories
                Article
                Custom metadata
                © The Author(s) 2020

                Uncategorized
                energy storage,batteries
                Uncategorized
                energy storage, batteries

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