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AuthorEisenmann, Tobiasdc.contributor.author
AuthorBirrozzi, Adeledc.contributor.author
AuthorMullaliu, Angelodc.contributor.author
AuthorGiuli, Gabrieledc.contributor.author
AuthorTrapananti, Angeladc.contributor.author
AuthorPasserini, Stefanodc.contributor.author
AuthorBresser, Dominicdc.contributor.author
Date of accession2023-09-19T12:46:29Zdc.date.accessioned
Available in OPARU since2023-09-19T12:46:29Zdc.date.available
Date of first publication2021-03-01dc.date.issued
AbstractThe introduction of transition metal dopants such as Fe and Co in zinc oxide enables substantially enhanced reversible capacities and greater reversibility of the de-/lithiation reactions occurring. Herein, we report a comprehensive analysis of the electrochemical processes taking place in Mn-doped ZnO (Zn0.9Mn0.1O) and carbon-coated Zn0.9Mn0.1O upon de-/lithiation. The results shed light on the impact of the dopant chemistry and, especially, its coordination in the crystal structure. When manganese does not replace zinc in the wurtzite structure, only a moderate improvement in electrochemical performance is observed. However, when applying the carbonaceous coating, a partial reduction of manganese and its reallocation in the crystal structure occur, leading to a substantial improvement in the material’s specific capacity. These results provide important insights into the impact of the lattice position of transition metal dopants—a field that has received very little, essentially no attention, so far.dc.description.abstract
Languageendc.language.iso
PublisherUniversität Ulmdc.publisher
LicenseCC BY 4.0 Internationaldc.rights
Link to license texthttps://creativecommons.org/licenses/by/4.0/dc.rights.uri
KeywordBatteries Li-iondc.subject
KeywordNanoscale materialsdc.subject
KeywordInterface modificationdc.subject
Dewey Decimal GroupDDC 540 / Chemistry & allied sciencesdc.subject.ddc
LCSHLithium cellsdc.subject.lcsh
LCSHEnergy storagedc.subject.lcsh
TitleEffect of applying a carbon coating on the crystal structure and de-/lithiation mechanism of Mn-doped ZnO lithium-ion anodesdc.title
Resource typeWissenschaftlicher Artikeldc.type
SWORD Date2022-01-31T07:18:20Zdc.date.updated
VersionpublishedVersiondc.description.version
DOIhttp://dx.doi.org/10.18725/OPARU-50334dc.identifier.doi
URNhttp://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-50410-3dc.identifier.urn
GNDLithium-Ionen-Akkumulatordc.subject.gnd
GNDEnergiespeicherdc.subject.gnd
Institutionuulm.affiliationSpecific
Peer reviewjauulm.peerReview
DCMI TypeTextuulm.typeDCMI
CategoryPublikationenuulm.category
DOI of original publication10.1149/1945-7111/abe6efdc.relation1.doi
Source - Title of sourceJournal of The Electrochemical Societysource.title
Source - Place of publicationIOP Publishingsource.publisher
Source - Volume168source.volume
Source - Issue3source.issue
Source - Year2021source.year
Source - Article number030503source.articleNumber
Source - ISSN0013-4651source.identifier.issn
Source - eISSN1945-7111source.identifier.eissn
Is Supplemented Byhttps://iopscience.iop.org/article/10.1149/1945-7111/abe6ef#dc.relation.isSupplementedBy


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