2020
DOI: 10.1038/s41598-020-70023-z
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TAO-DFT investigation of electronic properties of linear and cyclic carbon chains

Abstract: it has been challenging to adequately investigate the properties of nanosystems with radical nature using conventional electronic structure methods. We address this challenge by calculating the electronic properties of linear carbon chains (l-cc[n]) and cyclic carbon chains (c-cc[n]) with n = 10-100 carbon atoms, using thermally-assisted-occupation density functional theory (TAO-DFT). For all the cases investigated, l-cc[n]/c-cc[n] are ground-state singlets, and c-cc[n] are energetically more stable than l-cc[… Show more

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Cited by 33 publications
(52 citation statements)
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“…Based on the GIMIC calculations, they and the larger cyclo[ n ]carbons are nonaromatic polyalkynes, which perfectly explains the previously observed saturation of electronic descriptors such as the ionization potential, electron affinity, singlet–triplet splitting, singlet–quintet splitting, and so forth of the larger cyclo[ n ]carbons. 8 , 28 , 29 …”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…Based on the GIMIC calculations, they and the larger cyclo[ n ]carbons are nonaromatic polyalkynes, which perfectly explains the previously observed saturation of electronic descriptors such as the ionization potential, electron affinity, singlet–triplet splitting, singlet–quintet splitting, and so forth of the larger cyclo[ n ]carbons. 8 , 28 , 29 …”
Section: Resultsmentioning
confidence: 99%
“…Seenithurai and Chai 29 recently reported a systematic density functional theory (DFT) study of the energy differences between the lowest singlet and triplet states and between the lowest singlet and quintet states of cyclo[ n ]carbons ( n = 8–100). They also reported ionization potentials, electron affinities, fundamental gaps, occupation numbers of the frontier orbitals, and the relative energy with respect to the linear isomers.…”
Section: Introductionmentioning
confidence: 99%
“…The successful preparation of C 18 has garnered significant interest in the study of its potential properties. [ 9–17 ] Currently, C 18 composed of 18 carbon atoms by sp‐hybridization has been demonstrated to exhibit ohmic and quasi Schottky features, as well as current limiting ability in molecular devices. [ 18 ] Furthermore, C 18 may display excellent conductivity in molecular devices owing to its extensive π electron delocalization.…”
Section: Introductionmentioning
confidence: 99%
“…To overcome the computational expense of high‐level ab initio multi‐reference methods, thermally assisted‐occupation density functional theory (TAO‐DFT) was recently developed, [57, 58] and shows to be a very efficient electronic structure method for studying the properties of large ground‐state systems (e.g., containing up to a few thousand electrons) with strong static correlation effects [52, 68, 69] . TAO‐DFT is a density functional theory with fractional orbital occupations, wherein strong static correlation is explicitly described by the entropy contribution, [57] with a function of the fictitious temperature and orbital occupation numbers.…”
Section: Introductionmentioning
confidence: 99%
“…Accordingly, TAO‐DFT reduces to KS‐DFT for SR systems, and outperforms KS‐DFT for MR systems. TAO‐DFT has been widely applied to study the electronic properties of various MR systems at the nanoscale level including acenes and cyclacenes [52–54, 68–70] due to its computational efficiency that is similar to KS‐DFT. Therefore, we adopt TAO‐DFT to investigate the possibility of n ‐cyclacene ( n =10–20) formation from the corresponding n ‐didehydroacene.…”
Section: Introductionmentioning
confidence: 99%