A Theoretical Investigation of the Structural, Electronic and Mechanical Properties of Pristine and Nitrogen-Terminated Carbon Nanoribbons Composed of 4–5–6–8-Membered Rings

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dc.identifier.uri http://dx.doi.org/10.15488/15349
dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/15469
dc.contributor.author Mortazavi, Bohayra
dc.date.accessioned 2023-11-17T08:14:24Z
dc.date.available 2023-11-17T08:14:24Z
dc.date.issued 2023
dc.identifier.citation Mortazavi, B.: A Theoretical Investigation of the Structural, Electronic and Mechanical Properties of Pristine and Nitrogen-Terminated Carbon Nanoribbons Composed of 4–5–6–8-Membered Rings. In: Journal of Composites Science 7 (2023), Nr. 7, 269. DOI: https://doi.org/10.3390/jcs7070269
dc.description.abstract Among the exciting recent advances in the field of carbon-based nanomaterials, the successful realization of a carbon nanoribbon composed of 4–5–6–8-membered rings (ACS Nano 2023 17, 8717) is a particularly inspiring accomplishment. In this communication motivated by the aforementioned achievement, we performed density functional theory calculations to explore the structural, electronic and mechanical properties of the pristine 4–5–6–8-membered carbon nanoribbons. Moreover, we also constructed four different nitrogen-terminated nanoribbons and analyzed their resulting physical properties. The acquired results confirm that the pristine and nitrogen-terminated nanoribbons are are thermally stable direct-gap semiconductors, with very close HSE06 band gaps between 1.12 and 1.25 eV. The elastic modulus and tensile strength of the nitrogen-free 4–5–6–8-membered nanoribbon are estimated to be remarkably high, 534 and 41 GPa, respectively. It is shown that nitrogen termination can result in noticeable declines in the tensile strength and elastic modulus to 473 and 33 GPa, respectively. This study provides useful information on the structural, thermal stability, electronic and mechanical properties of the pristine and nitrogen-terminated 4–5–6–8-membered carbon nanoribbons and suggests them as strong direct-gap semiconductors for electronics, optoelectronics and energy storage systems. eng
dc.language.iso eng
dc.publisher Basel : MDPI
dc.relation.ispartofseries Journal of Composites Science 7 (2023), Nr. 7
dc.rights CC BY 4.0 Unported
dc.rights.uri https://creativecommons.org/licenses/by/4.0
dc.subject carbon nanoribbons eng
dc.subject density functional theory eng
dc.subject mechanical eng
dc.subject semiconductor eng
dc.subject.ddc 620 | Ingenieurwissenschaften und Maschinenbau
dc.subject.ddc 670 | Industrielle und handwerkliche Fertigung
dc.title A Theoretical Investigation of the Structural, Electronic and Mechanical Properties of Pristine and Nitrogen-Terminated Carbon Nanoribbons Composed of 4–5–6–8-Membered Rings eng
dc.type Article
dc.type Text
dc.relation.essn 2504-477X
dc.relation.doi https://doi.org/10.3390/jcs7070269
dc.bibliographicCitation.issue 7
dc.bibliographicCitation.volume 7
dc.bibliographicCitation.firstPage 269
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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