Expanding the perspective of polymeric selective contacts in photovoltaic devices using branched polyethilimine

dc.contributor.authorRos Costals, Eloi
dc.contributor.authorTom, Thomas
dc.contributor.authorRovira, David
dc.contributor.authorLópez Vidrier, Julià
dc.contributor.authorMasmitjà, Gerard
dc.contributor.authorPusay, Benjamin
dc.contributor.authorAlmache, Estefania
dc.contributor.authorMartin Garcia, Isidro
dc.contributor.authorJimenez, Maykel
dc.contributor.authorSaucedo Silva, Edgardo
dc.contributor.authorTormos, Eva
dc.contributor.authorAsensi López, José Miguel
dc.contributor.authorOrtega Villasclaras, Pablo Rafael
dc.contributor.authorBertomeu i Balagueró, Joan
dc.contributor.authorPuigdollers i González, Joaquim
dc.contributor.authorVoz Sánchez, Cristóbal
dc.date.accessioned2023-02-10T11:04:32Z
dc.date.available2023-09-05T05:10:23Z
dc.date.issued2022-09-05
dc.date.updated2023-02-10T11:04:32Z
dc.description.abstractThis work studies the use of polymeric layers of polyethylenimine (PEI) as an interface modification of electron-selective contacts. A clearly enhanced electrical transport with lower contact resistance and significant surface passivation (about 3 ms) can be achieved with PEI modification. As for other conjugated polyelectrolytes, protonated groups of the polymer with their respective counter anions from the solvent create an intense dipole. In this work, part of the amine groups in PEI are protonated by ethanol that behaves as a weak Brønsted acid during the process. A comprehensive characterization including highresolution compositional analysis confirms the formation of a dipolar interlayer. The PEI modification is able to eliminate completely Fermi-level pinning at metal/semiconductor junctions and shifts the work function of the metallic electrode by more than 1 eV. Induced charge transport between the metal and the semiconductor allows the formation of an electron accumulation region. Consequently, electron-selective contacts are clearly improved with a significant reduction of the specific contact resistance (less than 100 mΩ·cm2). Proof-of-concept dopant-free solar cells on silicon were fabricated to demonstrate the beneficial effect of PEI dipolar interlayers. Full dopant-free solar cells with conversion efficiencies of about 14% could be fabricated on flat wafers. The PEI modification also improved the performance of classical high-efficiency heterojunction solar cells.
dc.format.extent16 p.
dc.format.mimetypeapplication/pdf
dc.identifier.idgrec725240
dc.identifier.issn2574-0962
dc.identifier.urihttps://hdl.handle.net/2445/193377
dc.language.isoeng
dc.publisherAmerican Chemical Society
dc.relation.isformatofVersió postprint del document publicat a: https://doi.org/10.1021/acsaem.2c01422
dc.relation.ispartofACS Applied Energy Materials, 2022, vol. 5, num. 9, p. 10702-10709
dc.relation.urihttps://doi.org/10.1021/acsaem.2c01422
dc.rights(c) American Chemical Society , 2022
dc.rights.accessRightsinfo:eu-repo/semantics/openAccess
dc.sourceArticles publicats en revistes (Física Aplicada)
dc.subject.classificationSilici
dc.subject.classificationCèl·lules solars
dc.subject.otherSilicon
dc.subject.otherSolar cells
dc.titleExpanding the perspective of polymeric selective contacts in photovoltaic devices using branched polyethilimine
dc.typeinfo:eu-repo/semantics/article
dc.typeinfo:eu-repo/semantics/acceptedVersion

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