Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/44629
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dc.contributor.authorSCAFFIDI, Romain-
dc.contributor.authorGong, Yuancai-
dc.contributor.authorJimenez-Arguijo, Alex-
dc.contributor.authorMedaille, Axel Gon-
dc.contributor.authorSURESH, Sunil-
dc.contributor.authorBRAMMERTZ, Guy-
dc.contributor.authorGiraldo, Sergio-
dc.contributor.authorPuigdollers, Joaquim-
dc.contributor.authorFlandre, Denis-
dc.contributor.authorVERMANG, Bart-
dc.contributor.authorSaucedo, Edgardo-
dc.date.accessioned2024-11-08T07:32:45Z-
dc.date.available2024-11-08T07:32:45Z-
dc.date.issued2024-
dc.date.submitted2024-11-07T13:13:16Z-
dc.identifier.citationMaterials Today Energy, 46 (Art N° 101715)-
dc.identifier.urihttp://hdl.handle.net/1942/44629-
dc.description.abstractThe photovoltaic sector currently experiences a growing demand for deeply-integrated technologies in agriculture, buildings, vehicles, among others. Kesterite compounds provide a versatile solution through their tunable bandgap via isovalent alloying. However, this should be done while preserving material opto-electronic quality and device performance, which is an unresolved challenge. Indeed, tuning the bandgap of kesterites must ensure low crystalline disorder to counteract the associated open-circuit voltage (Voc) losses when used in solar cells. To achieve this goal, this work introduces a simple molecular ink recipe realized in ambient air to process singlephase high-quality Ag,Gealloyed kesterite absorbers. By varying the Ge content from 0 to 100 %, the absorber bandgap covers the range from 1.15 to 1.5 eV, in which the Urbach energy remains close to 20 meV and promisingly low Voc deficits are observed. In particular, the champion efficiency of 12.1 % obtained with 40 % Ge breaks the record for Ge-alloyed kesterites with a 1.2 eV bandgap by remarkably reaching 62 % of the ShockleyQueisser limit for Voc. This study demonstrates a promising strategy to solve the issue of large band tailing and low opto-electronic quality in widebandgap kesterites while establishing a foundation for solution-processed kesterite solar cells with tunable bandgap and promising performance.-
dc.description.sponsorshipThis project received funding from the European Union’s H2020 research and innovation programme under grant agreement number 952982 (CUSTOM-ART). R.S. thanks FWO for the funding through the Fundamental Research PhD Fellowship (1178024N) and Travel Grant for a long stay abroad (V462623N). Y.G. thanks the European Union’s Horizon 2020 research and innovation programme under the Marie Skłodowska-Curie grant agreement No 10115148. A.J.A. acknowledges the funding from Agencia Estatal de Investigacion, MICINN Spain, project ACT-FAST (PCI2023-145971-2) from the CETP-Partnership Program 2022. S.G. thanks the Juan de la Cierva grant IJC2020- 044716-I funded by MCIN/AEI/10.13039/501100011033 and by the European Union NextGenerationEU/PRTR. E.S. is grateful to ICREA Academia program.-
dc.language.isoen-
dc.publisherELSEVIER SCI LTD-
dc.rights2024 The Authors. Published by Elsevier Ltd. This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/bync/4.0/).-
dc.subject.otherPhotovoltaics-
dc.subject.otherKesterite-
dc.subject.otherBandgap tuning-
dc.subject.otherGe alloying-
dc.subject.otherSolution processing-
dc.titleTuning the bandgap without compromising efficiency: Ambient solution processing of Ge-alloyed (Ag,Cu)2Zn(Sn,Ge)(S,Se)4 kesterite thin-film solar cells-
dc.typeJournal Contribution-
dc.identifier.volume46-
local.format.pages11-
local.bibliographicCitation.jcatA1-
dc.description.notesScaffidi, R (corresponding author), Hasselt Univ, Imo Imomec, Martelarenlaan 42, B-3500 Hasselt, Belgium.-
dc.description.notesromain.scaffidi@imec.be-
local.publisher.place125 London Wall, London, ENGLAND-
local.type.refereedRefereed-
local.type.specifiedArticle-
local.bibliographicCitation.artnr101715-
local.type.programmeH2020-
local.relation.h2020952982-
dc.identifier.doi10.1016/j.mtener.2024.101715-
dc.identifier.isi001338762000001-
local.provider.typewosris-
local.description.affiliation[Scaffidi, Romain; Suresh, Sunil; Brammertz, Guy; Vermang, Bart] Hasselt Univ, Imo Imomec, Martelarenlaan 42, B-3500 Hasselt, Belgium.-
local.description.affiliation[Scaffidi, Romain; Suresh, Sunil; Brammertz, Guy; Vermang, Bart] Imec, Imo Imomec, Thor Pk 8320, B-3600 Genk, Belgium.-
local.description.affiliation[Scaffidi, Romain; Suresh, Sunil; Brammertz, Guy; Vermang, Bart] EnergyVille, Imo Imomec, Thor Pk 8320, B-3600 Genk, Belgium.-
local.description.affiliation[Scaffidi, Romain; Flandre, Denis] Catholic Univ Louvain, ICTEAM, Pl Levant 3, B-1348 Louvain la Neuve, Belgium.-
local.description.affiliation[Gong, Yuancai; Jimenez-Arguijo, Alex; Medaille, Axel Gon; Giraldo, Sergio; Puigdollers, Joaquim; Saucedo, Edgardo] Univ Politecn Cataluna, Elect Engn Dept, AV Eduard Maristany 10-14, Barcelona 08019, Spain.-
local.uhasselt.internationalno-
item.contributorSCAFFIDI, Romain-
item.contributorGong, Yuancai-
item.contributorJimenez-Arguijo, Alex-
item.contributorMedaille, Axel Gon-
item.contributorSURESH, Sunil-
item.contributorBRAMMERTZ, Guy-
item.contributorGiraldo, Sergio-
item.contributorPuigdollers, Joaquim-
item.contributorFlandre, Denis-
item.contributorVERMANG, Bart-
item.contributorSaucedo, Edgardo-
item.fullcitationSCAFFIDI, Romain; Gong, Yuancai; Jimenez-Arguijo, Alex; Medaille, Axel Gon; SURESH, Sunil; BRAMMERTZ, Guy; Giraldo, Sergio; Puigdollers, Joaquim; Flandre, Denis; VERMANG, Bart & Saucedo, Edgardo (2024) Tuning the bandgap without compromising efficiency: Ambient solution processing of Ge-alloyed (Ag,Cu)2Zn(Sn,Ge)(S,Se)4 kesterite thin-film solar cells. In: Materials Today Energy, 46 (Art N° 101715).-
item.fulltextWith Fulltext-
item.accessRightsOpen Access-
crisitem.journal.issn2468-6069-
crisitem.journal.eissn2468-6069-
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