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Please use this identifier to cite or link to this item: https://dspace.ffh.bg.ac.rs/handle/123456789/2259
DC FieldValueLanguage
dc.contributor.authorGezović, Aleksandraen_US
dc.contributor.authorMilović, Milošen_US
dc.contributor.authorBajuk-Bogdanović, Danicaen_US
dc.contributor.authorGrudić, Veselinkaen_US
dc.contributor.authorDominko, Roberten_US
dc.contributor.authorMentus, Slavkoen_US
dc.contributor.authorVujković, Milicaen_US
dc.date.accessioned2024-01-15T09:36:59Z-
dc.date.available2024-01-15T09:36:59Z-
dc.date.issued2024-02-01-
dc.identifier.issn00134686-
dc.identifier.urihttps://dspace.ffh.bg.ac.rs/handle/123456789/2259-
dc.description.abstractM4Fe3(PO4)2(P2O7) specific family has appeared as a new class of polyanionic compounds for sodium-ion batteries, capable of offering a higher operating voltage than individual phosphates and pyrophosphates. The study addresses the issue of Na4Fe3(PO4)2P2O7 (NFPP) sol-gel synthesis when both phosphates and pyrophosphates act as reactants, leading to successful production of NFPP under controlled synthesis conditions, capable of reaching the theoretical capacity. Spontaneous citric-assisted sol-gel reaction, between PO43− and P2O72− units occurring at pH of 3 (which follows NFPP stoichiometry), leads to the formation of pyrophosphate (Na2FeP2O7, NFP) with a certain amount of the mixed phase. Fe-oxalate coordination is dominant at low pH while the citric acid protonation suppresses direct Fe-citric complexation. pH adjustment to a neutral value changes the complexation and reaction pathway, allowing direct Fe(II)-citric coordination and subsequent oxidation. The exchange of Fe-oxalate with the soluble ferric ammonium citrate complex happens under neutral pH and therefore leads to the formation of NFPP as the dominant phase, liberated from NFP. Furthermore, a series of samples, developed by varying citric-to-Fe molar ratio and controlling pH, served as a platform to identify and solve problems regarding the unambiguous FTIR assignment of the polyanionic NFP/NFPP mixture. FTIR and CV methods are proposed as assisting tools for XRD to identify NFP admixture. Finally, and most importantly, NFPP phase formed under neutral pH has a higher sodiation/desodiation capacity than NFPP/NFP heterostructure, reaching a theoretical value at a rather high current of 1 A g−1, which has not been attained in the literature.en_US
dc.relation.ispartofElectrochimica Actaen_US
dc.subjectNa-ion batteriesen_US
dc.subjectNa FeP O secondary phase 2 2 7en_US
dc.subjectNa Fe (PO ) (P O ) 4 3 4 2 2 7en_US
dc.subjectSol-gel synthesisen_US
dc.subjectThe critical role of pHen_US
dc.titleAn effective approach to reaching the theoretical capacity of a low-cost and environmentally friendly Na<inf>4</inf>Fe<inf>3</inf>(PO<inf>4</inf>)<inf>2</inf>(P<inf>2</inf>O<inf>7</inf>) cathode for Na-ion batteriesen_US
dc.typeArticleen_US
dc.identifier.doi10.1016/j.electacta.2023.143718-
dc.identifier.scopus2-s2.0-85181402365-
dc.identifier.urlhttps://api.elsevier.com/content/abstract/scopus_id/85181402365-
dc.relation.volume476en_US
item.fulltextNo Fulltext-
item.openairetypeArticle-
item.cerifentitytypePublications-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.grantfulltextnone-
crisitem.author.orcid0000-0003-2443-376X-
crisitem.author.orcid0000-0001-8155-8003-
crisitem.author.orcid0000-0002-0518-8837-
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University of Belgrade
Faculty of Physical Chemistry
Studentski trg 12-16
11158 Belgrade 118
PAC 105305
SERBIA
University of Belgrade Faculty of Physical Chemistry