Design of novel tellurium and selenium containing semiconducting polymers using quantum mechanical tools

dc.authoridKayi, Hakan/0000-0001-7300-0325
dc.authorscopusid57191924764
dc.authorscopusid22938517300
dc.authorwosidKayi, Hakan/C-7300-2009
dc.contributor.authorKayı, Hakan
dc.contributor.authorKayi, Hakan
dc.contributor.otherChemical Engineering
dc.date.accessioned2024-07-05T14:30:37Z
dc.date.available2024-07-05T14:30:37Z
dc.date.issued2017
dc.departmentAtılım Universityen_US
dc.department-temp[Kaya, Birnur; Kayi, Hakan] Atilim Univ, Chem Engn & Appl Chem Dept, Computat Chem Lab, TR-06836 Ankara, Turkeyen_US
dc.descriptionKayi, Hakan/0000-0001-7300-0325en_US
dc.description.abstractStructural, optical and electronic properties of the two novel donor-acceptor-donor type conjugated polymers based on 4,7-di(selenophen-2-yl)benzo[c][1,2,5]selenadiazole (SeSeSe) and 4,7-di(tellurophen-2-yl)benzo[c][1,2,5]telluradiazole (TeTeTe) are investigated by means of quantum chemical calculations utilizing conventional and long-range corrected hybrid functionals. The lowest energy structures of the SeSeSe and TeTeTe monomers and oligomers are revealed through conformational analysis, while their electronic properties are obtained from density functional theory (DFT) molecular orbital calculations and optical properties are obtained from the time dependent DFT (TD-DFT) calculations for UV-vis absorption spectra. Electronic band gaps that directly affect the semiconducting properties of these novel polymers are calculated by using linear regression analysis of DFT data, and also periodic boundary conditions calculations (PBC-DFT). Our results indicate that SeSeSe and TeTeTe polymers have considerably lower band gap values than that of their furan-, thiophene-, benzooxadiazole- and benzothiadiazole-based analogs. The novel SeSeSe and TeTeTe polymers with improved optical and electronic properties may have an important role in the near future, especially for the optoelectronic and photovoltaic applications. (C) 2016 Elsevier B.V. All rights reserved.en_US
dc.identifier.citation4
dc.identifier.doi10.1016/j.comptc.2016.11.014
dc.identifier.endpage54en_US
dc.identifier.issn2210-271X
dc.identifier.issn1872-7999
dc.identifier.scopus2-s2.0-84994876746
dc.identifier.scopusqualityQ3
dc.identifier.startpage45en_US
dc.identifier.urihttps://doi.org/10.1016/j.comptc.2016.11.014
dc.identifier.urihttps://hdl.handle.net/20.500.14411/587
dc.identifier.volume1099en_US
dc.identifier.wosWOS:000392895400007
dc.identifier.wosqualityQ3
dc.language.isoenen_US
dc.publisherElsevieren_US
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectPolymer solar cellsen_US
dc.subjectDensity functional theoryen_US
dc.subjectBand gapen_US
dc.subjectDonor-acceptor-donoren_US
dc.subjectTellurophene benzotelluradiazoleen_US
dc.subjectSelenophene benzoselenadiazoleen_US
dc.titleDesign of novel tellurium and selenium containing semiconducting polymers using quantum mechanical toolsen_US
dc.typeArticleen_US
dspace.entity.typePublication
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