Electronic transport and non-linear optical properties of Hexathiopentacene (HTP) nanorings: A DFT study

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dc.contributor.author Muz, İskender
dc.date.accessioned 2021-05-27T09:29:24Z
dc.date.available 2021-05-27T09:29:24Z
dc.date.issued 2020-02-21
dc.identifier.uri http://hdl.handle.net/20.500.11787/1807
dc.description.abstract The electronic structure and structural and optoelectronic properties of hexathiopentacene (HTP) nanorings have been carried out by density functional theory (DFT) and time-dependent DFT (TD-DFT). Herein, the binding energy per atom, ionization potential, electron affinity, chemical hardness, highest occupied molecular orbital (HOMO)–lowest unoccupied molecular orbital (LUMO) gap, refractive index, charge distributions, absorbance spectra and non-linear optical properties have been measured. The calculations on these nanorings show that the HOMO–LUMO gaps range from 1.87 eV to 1.28 eV, which corresponds to the bandgap of known photovoltaic semiconductors, while the absorbance spectrum increases from 674 nm (1.84 eV) to 874 nm (1.42 eV), which indicates that the HTP nanorings absorb more light as the nanoring size is increased. From the binding energy, the stability of the HTP nanorings is higher than that of the HTP structure. Our results show that an increase in the size may play a significant role in improving the design of optoelectronic devices based upon these HTP nanorings. tr_TR
dc.language.iso eng tr_TR
dc.publisher Springer tr_TR
dc.relation.isversionof 10.1007/s11664-020-08017-w tr_TR
dc.rights info:eu-repo/semantics/restrictedAccess tr_TR
dc.subject HTP nanorings tr_TR
dc.subject TD-DFT tr_TR
dc.subject Electronic structure tr_TR
dc.subject Band gap tr_TR
dc.title Electronic transport and non-linear optical properties of Hexathiopentacene (HTP) nanorings: A DFT study tr_TR
dc.type article tr_TR
dc.relation.journal Journal of Electronic Materials tr_TR
dc.contributor.department Nevşehir Hacı Bektaş Veli Üniversitesi, eğitim fakültesi, matematik ve fen bilimleri eğitmi bölümü tr_TR
dc.contributor.authorID 33985 tr_TR
dc.identifier.volume 49 tr_TR
dc.identifier.startpage 3282 tr_TR
dc.identifier.endpage 3289 tr_TR


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