Sodium-Ion Batteries Obtained through Urea Based

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Sodium-Ion Batteries Obtained through Urea Based ( sodium-ion-batteries-obtained-through-urea-based )

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Batteries 2018, 4, 8 10 of 10 27. Aruna, S.T.; Mukasyan, A.S. Combustion synthesis and nanomaterials. Curr. Opin. Solid State Mater. Sci. 2008, 12, 44–50. [CrossRef] 28. Mumme, W. The Structure of Na4 Mn4 Ti5 O18 . Acta Crystallogr. Sect. B Struct. Sci. Cryst. Eng. Mater. 1968, 24, 1114–1120. [CrossRef] 29. Dall’Asta, V.; Buchholz, D.; Chagas, L.G.; Dou, X.; Ferrara, C.; Quartarone, E.; Tealdi, C.; Passerini, S. Aqueous Processing of Na0.44MnO2 Cathode Material for the Development of Greener Na-Ion Batteries. ACS Appl. Mater. Interfaces 2017, 9, 34891–34899. [CrossRef] [PubMed] 30. Qiao, L.; Swihart, M.T. Solution-phase synthesis of transition metal oxide nanocrystals: Morphologies, formulae, and mechanisms. Adv. Coll. Interface Sci. 2017, 244, 199–266. [CrossRef] [PubMed] 31. Fu, B.; Zhou, X.; Wang, Y. High-Rate Performance Electrospun Na0.44MnO2 Nanofibers as Cathode Material for Sodium-Ion Batteries. J. Power Sources 2016, 310, 102–108. [CrossRef] 32. He, X.; Wang, J.; Qiu, B.; Paillard, E.; Ma, C.; Cao, X.; Liu, H.; Stan, M.C.; Liu, H.; Gallash, T.; et al. Durable High-Rate Capability Na0.44MnO2 Cathode Material for Sodium-Ion Batteries. Nano Energy 2016, 27, 602–610. [CrossRef] © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).

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