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dc.contributor.authorAnefnaf, Ikram
dc.contributor.authorAazou, Safae
dc.contributor.authorVidal Fuentes, Pedro
dc.contributor.authorFonoll Rubio, Robert
dc.contributor.authorTiwari, Ashish Kumar
dc.contributor.authorJehl Li-Kao, Zacharie
dc.contributor.authorGuc, Maxim
dc.contributor.authorSaucedo Silva, Edgardo Ademar
dc.contributor.authorSekkat, Zouheir
dc.contributor.otherInstitut de Recerca en Energía de Catalunya
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament d'Enginyeria Electrònica
dc.date.accessioned2022-02-01T12:08:58Z
dc.date.issued2021-08-01
dc.identifier.citationAnefnaf, I. [et al.]. Insights on the limiting factors of Cu2ZnGeSe4 based solar cells. "Solar energy materials and solar cells", 1 Agost 2021, vol. 227, núm. 111106, p. 111106:1-111106:9.
dc.identifier.issn0927-0248
dc.identifier.urihttp://hdl.handle.net/2117/361225
dc.description.abstractGermanium-based wide band gap kesterite semiconductor Cu2ZnGe(S,Se)4 (CZGeSSe) is considered a very promising absorber compound as top cell in tandem devices. Autonomy to tailor the band gap from ~1.47 eV (Cu2ZnGeSe4-CZGeSe) to ~2.2 eV (Cu2ZnGeS4-CZGeS), as well as non-toxic constituents makes this compound a strong candidate for further scientific exploration. However, the record efficiency of Cu2ZnGeSe4 solar cells is still significantly lower than those of its predecessors Cu2ZnSn(SxSe1-x)4 (CZTSSe), Cu(In,Ga)Se2 (CIGS) and CdTe thin-film solar cells. The comprehensive understanding of the factors limiting the performance of Cu2ZnGeSe4 based solar cells is the purpose of this work, by combining a complete characterization of the morphological, structural, compositional and optoelectronic properties of Cu2ZnGeSe4 absorbers and devices. Besides, an in-depth investigation of the main limitations is carried out, specifically focusing on studying the origin of the large VOC deficit, the main recombination mechanisms, electric transport properties, band tails and possible Cu2ZnGeSe4/CdS band offset effects. The champion CZGeSe solar cell device reported in this work shows an efficiency of 6.5%, Voc of 606 mV, JSC of 17.8 mA/cm2 and FF of 60%. The results presented here demonstrate that the large voltage deficit of CZGeSe solar cells could be mainly ascribed to a Fermi level pinning at the interface, while modifications of the buffer layer to induce a “spike” at the p-n junction could be beneficial. Additionally, low carrier diffusion lengths and lifetimes, along with possible back contact recombination, are identified as the main culprits for the limited carrier collection for low-energy photons. Finally, some strategies are proposed to face and overcome most of these issues and to help improving the CZGeSe performance.
dc.language.isoeng
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Energies::Energia solar fotovoltaica::Cèl·lules solars
dc.subject.lcshSolar cells
dc.subject.otherKesterite solar cells
dc.subject.otherCu2ZnGeSe4
dc.subject.otherLimitations
dc.subject.otherRecombination
dc.subject.otherVOC deficit
dc.titleInsights on the limiting factors of Cu2ZnGeSe4 based solar cells
dc.typeArticle
dc.subject.lemacCèl·lules solars
dc.contributor.groupUniversitat Politècnica de Catalunya. MNT - Grup de Recerca en Micro i Nanotecnologies
dc.identifier.doi10.1016/j.solmat.2021.111106
dc.description.peerreviewedPeer Reviewed
dc.relation.publisherversionhttps://www.sciencedirect.com/science/article/abs/pii/S0927024821001483
dc.rights.accessRestricted access - publisher's policy
local.identifier.drac31986236
dc.description.versionPostprint (author's final draft)
dc.date.lift2023-08-01
local.citation.authorAnefnaf, I.; Aazou, S.; Vidal, P.; Fonoll, R.; Tiwari, A.; Jehl, Z.; Guc, M.; Saucedo Silva, Edgardo; Sekkat, Z.
local.citation.publicationNameSolar energy materials and solar cells
local.citation.volume227
local.citation.number111106
local.citation.startingPage111106:1
local.citation.endingPage111106:9


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