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Triphenylamine substituted copper and zinc phthalocyanines as alternative hole-transporting materials for solution-processed perovskite solar cells

dc.contributor.authorCelik, Gizem Gumusgoz
dc.contributor.authorSahin, Ayse Nur
dc.contributor.authorLafzi, Ferruh
dc.contributor.authorSaracoglu, Nurullah
dc.contributor.authorAltindal, Ahmet
dc.contributor.authorGurek, Ayse Gul
dc.contributor.authorAtilla, Devrim
dc.date.accessioned2026-06-27T14:46:06Z
dc.date.issued2022
dc.description.abstractIn the present study, new peripheral substituted Zn(II) and Cu(II) phthalocyanine derivatives (p-ZnPc and p-CuPc) bearing bulky aromatic triphenylamine groups were synthesized as alternative hole-transporting materials (HTMs). The structures of the new phthalocyanine derivatives (p-ZnPc and p-CuPc) were illuminated by various spectroscopic techniques such as mass spectrometry and H-1, and C-13-NMR. After structural analysis, their photophysical properties in solution and the solid phase were examined by UV-Vis absorption and fluorescence spectroscopy. Using p-ZnPc and p-CuPc as HTMs, highly stable perovskite-based solar cells with the structure of FTO/SnO2/perovskite/p-ZnPc and p-CuPc/Ag have been developed and characterized. It was observed that our devices with p-ZnPc as the HTM maintain over 93% of the initial performance for more than 960 h under atmospheric conditions (22-27 degrees C) with 35-45% relative humidity. In addition, some strategies such as using various methylammonium iodide (MAI) and lead iodide (Pbl(2)) blend ratios between 1 : 0.4 and 1 : 1.8 were employed to test the effect of the blend ratios on the long term stability of the perovskite-based solar cells. Our findings demonstrated that the spin-coated p-ZnPc based HTM demonstrated competitive power conversion efficiency and exhibited superior stability without encapsulation compared to commonly used HTMs.en
dc.description.sponsorshipScientific and Technological Research Council of Turkey (TUBITAK) [118Z736]
dc.description.urihttps://doi.org/10.1039/d2dt00068g
dc.identifier.doi10.1039/d2dt00068g
dc.identifier.eissn1477-9234
dc.identifier.endpage9396
dc.identifier.issn1477-9226
dc.identifier.issue24
dc.identifier.pubmed35674235
dc.identifier.startpage9385
dc.identifier.urihttps://hdl.handle.net/20.500.14981/64522
dc.identifier.volume51
dc.identifier.wos000807557000001
dc.language.isoeng
dc.publisherROYAL SOC CHEMISTRY
dc.relation.ispartofDALTON TRANSACTIONS
dc.subjectOPEN-CIRCUIT VOLTAGE
dc.subjectZN(II) PHTHALOCYANINES
dc.subjectHIGHLY EFFICIENT
dc.subjectLITHIUM-SALTS
dc.subjectPERFORMANCE
dc.subjectLAYERS
dc.subjectRECOMBINATION
dc.subjectSTABILITY
dc.subjectChemistry
dc.titleTriphenylamine substituted copper and zinc phthalocyanines as alternative hole-transporting materials for solution-processed perovskite solar cells
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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