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dc.contributor.authorWang, Suhao
dc.contributor.authorWei, Huan
dc.contributor.authorRillaerts, Antoine
dc.contributor.authorDeneme, Ibrahim
dc.contributor.authorDepriester, Michael
dc.contributor.authorManikandan, Suraj
dc.contributor.authorAndreasen, Jens Wenzel
dc.contributor.authorDaoudi, Abdelylah
dc.contributor.authorPeralta, Sebastien
dc.contributor.authorLonguemart, Stephane
dc.contributor.authorUsta, Hakan
dc.contributor.authorCornil, Jerome
dc.contributor.authorHu, Yuanyuan
dc.contributor.authorPisula, Wojciech
dc.date.accessioned2025-05-08T13:01:59Z
dc.date.available2025-05-08T13:01:59Z
dc.date.issued2025en_US
dc.identifier.issn2365-709X
dc.identifier.urihttps://doi.org/10.1002/admt.202401131
dc.identifier.urihttps://hdl.handle.net/20.500.12573/2531
dc.description.abstractThe development of n-type organic thermoelectric materials, especially π-conjugated small molecules, lags far behind their p-type counterparts, due primarily to the scarcity of efficient electron-transporting molecules and the typically low electron affinities of n-type conjugated molecules that leads to inefficient n-doping. Herein, the n-doping of two functionalized (carbonyl vs dicyanovinylene) indenofluorene-based conjugated small molecules, 2,8-bis(5-(2-octyldodecyl)thien-2-yl)indeno[1,2-b]fluorene-6,12-dione (TIFDKT) and 2,2′-(2,8-bis(3-alkylthiophen-2-yl)indeno[1,2-b]fluorene-6,12-diylidene)dimalononitrile (TIFDMT) are demonstrated, with n-type dopant N-DMBI. While TIFDKT shows decent miscibility with N-DMBI, it can be hardly n-doped owing to its insufficiently low LUMO. On the other hand, TIFDMT, despite a poorer miscibility with N-DMBI, can be efficiently n-doped, reaching a respectable electrical conductivity of 0.16 S cm−1. Electron paramagnetic resonance measurements confirm the efficient n-doping of TIFDMT. Based on density functional theory (DFT) calculations, the LUMO frontier orbital energy of TIFDMT is much lower, and its wave function is more delocalized compared to TIFDKT. Additionally, the polarons are more delocalized in the n-doped TIFDMT. Remarkably, as indicated by the grazing-incidence wide-angle X-ray scattering (GIWAXS), the molecular order for TIFDMT thin-film is enhanced by n-doping, leading to more favorable packing with edge-on orientation and shorter π-π stacking distances (from 3.61 to 3.36 Å). This induces more efficient charge transport in the doped state. Upon optimization, a decent thermoelectric power factor of 0.25 µWm−1K−2 is achieved for n-doped TIFDMT. This work reveals the effect of carbonyl vs dicyanovinylene on the n-doping efficiency, microstructure evolution upon doping and thermoelectric performance, offering a stepping stone for the future design of efficient n-type thermoelectric molecules.en_US
dc.description.sponsorshipS.W. and H.W. contributed equally to this work. S.W. gratefully acknowledges Agence Nationale de la Recherche (ANR-23-CPJ1-0047-01) and Université du Littoral Côte d’Opale (ULCO) for financial support. Y.H. thanks the National Key Research and Development Program (2022YFB3603802), the National Natural Science Foundation of China (62222403; 62074054; U21A20497), the Natural Science Foundation of Hunan Province (2022JJ10019), and Shenzhen Science and Technology Innovation Commission (RCYX20200714114537036) for financial support. Computational resources were provided by the Consortium des Équipements de Calcul Intensif (CÉCI) funded by F.R.S.- FNRS under Grant 2.5020.11. J.C. is an FNRS research director. H.U. and I.D. acknowledge support from the AGU-BAP (Abdullah Gül UniversityScientific Research Projects Funding Program) (FYL-2018-115). W.P. acknowledges the National Science Centre, Poland, through the grant UMO2019/33/B/ST3/1550. S.W. gratefully acknowledges Prof. Abdelhak Hadj Sahraoui and Dr. Mathieu Bardoux for their help in setting up the equipment.en_US
dc.language.isoengen_US
dc.publisherWILEY- Advanceden_US
dc.relation.isversionof10.1002/admt.202401131en_US
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectCharge transporten_US
dc.subjectDFT calculationsen_US
dc.subjectGreen energyen_US
dc.subjectN-dopingen_US
dc.subjectOrganic thermoelectricsen_US
dc.titleN-Type Molecular Thermoelectrics Based on Solution-Doped Indenofluorene-Dimalononitrile: Simultaneous Enhancement of Doping Level and Molecular Orderen_US
dc.typearticleen_US
dc.contributor.departmentAGÜ, Mühendislik Fakültesi, Malzeme Bilimi ve Nanoteknoloji Mühendisliği Bölümüen_US
dc.contributor.authorID0000-0001-9415-0242en_US
dc.contributor.authorID0000-0002-0618-1979en_US
dc.contributor.institutionauthorUsta, Hakan
dc.contributor.institutionauthorDeneme, Ibrahim
dc.identifier.volume10en_US
dc.identifier.issue1en_US
dc.identifier.startpage1en_US
dc.identifier.endpage10en_US
dc.relation.journalADVANCED MATERIALS TECHNOLOGIESen_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US


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