Recent Development for Sodium Metal Batteries

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Recent Development for Sodium Metal Batteries ( recent-development-sodium-metal-batteries )

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Batteries 2022, 8, 157 25 of 25 129. Yang,J.;Gao,Z.;Ferber,T.;Zhang,H.;Guhl,C.;Yang,L.;Li,Y.;Deng,Z.;Liu,P.;Cheng,C.Guided-formationofafavorable interface for stabilizing Na metal solid-state batteries. J. Mater. Chem. A 2020, 8, 7828–7835. [CrossRef] 130. Lu,Y.;Alonso,J.A.;Yi,Q.;Lu,L.;Wang,Z.L.;Sun,C.Ahigh-performancemonolithicsolid-statesodiumbatterywithCa2+doped Na3Zr2Si2PO12 electrolyte. Adv. Energy Mater. 2019, 9, 1901205. [CrossRef] 131. Miao,X.;Di,H.;Ge,X.;Zhao,D.;Wang,P.;Wang,R.;Wang,C.;Yin,L.AlF3-modifiedanode-electrolyteinterfaceforeffectiveNa dendrites restriction in NASICON-based solid-state electrolyte. Energy Storage Mater. 2020, 30, 170–178. [CrossRef] 132. Chen,S.;Niu,C.;Lee,H.;Li,Q.;Yu,L.;Xu,W.;Zhang,J.-G.;Dufek,E.J.;Whittingham,M.S.;Meng,S.;etal.CriticalParameters for Evaluating Coin Cells and Pouch Cells of Rechargeable Li-Metal Batteries. Joule 2019, 3, 1094–1105. [CrossRef] 133. Chen, H.; Yang, Y.; Boyle, D.T.; Jeong, Y.K.; Xu, R.; de Vasconcelos, L.S.; Huang, Z.; Wang, H.; Wang, H.; Huang, W.; et al. Free-standing ultrathin lithium metal–graphene oxide host foils with controllable thickness for lithium batteries. Nat. Energy 2021, 6, 790–798. [CrossRef] 134. Niu, C.; Liu, D.; Lochala, J.A.; Anderson, C.S.; Cao, X.; Gross, M.E.; Xu, W.; Zhang, J.-G.; Whittingham, M.S.; Xiao, J.; et al. Balancing interfacial reactions to achieve long cycle life in high-energy lithium metal batteries. Nat. Energy 2021, 6, 723–732. [CrossRef]

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