Cataloged from PDF version of article.The effects of Palladium (Pd) termination on the electronic properties of armchair graphene nanoribbons (AGNRs) were calculated by using ab initio calculations. After a geometric optimization process, the electronic band structures, density of states, and binding energies of AGNRs with N-a = 5-15 were calculated. Pd-termination was found to significantly influence the electronic properties of AGNRs. In DOS, many Q0D and Q1D type states were observed. Binding energy (BE) for single-side or both-side Pd-terminated structures represents characteristic drops with the increasing GNR width. With the increasing GNR width, the BEs of these structures become similar to hydrogenated structures. Because of the GNR...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
In this study, we investigate the electronic and magnetic properties of graphane nanoribbons. We fin...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...
The effects of Palladium (Pd) termination on the electronic properties of armchair graphene nanoribb...
Cataloged from PDF version of article.We investigate the effects of ruthenium (Ru) termination and R...
This is the final version of the article. Available from AIP via the DOI in this record.Ab initio c...
We carry out quantum chemistry calculations on armchair graphene nanoribbons (AGNRs) using density-f...
Journal ArticleUsing first-principles electronic structure calculations, we show a metal-semiconduct...
The general objective of the research project is to study the electronic properties of graphene nan...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
The influence of edge structure on the electronic properties of graphene quantum dots and nanoribbon...
The results reported here are from the theoretical investigations of the graphene systems. In select...
YYS acknowledges support from the Funds for Women Graduates (GA-00558). FG and CJB acknowledge suppo...
Properties brought about by lateral in-plane coupling between graphene nanoribbons (GNRs) are invest...
Graphene is a famous truly two-dimensional (2D) material, possessing a cone-like energy structure ne...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
In this study, we investigate the electronic and magnetic properties of graphane nanoribbons. We fin...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...
The effects of Palladium (Pd) termination on the electronic properties of armchair graphene nanoribb...
Cataloged from PDF version of article.We investigate the effects of ruthenium (Ru) termination and R...
This is the final version of the article. Available from AIP via the DOI in this record.Ab initio c...
We carry out quantum chemistry calculations on armchair graphene nanoribbons (AGNRs) using density-f...
Journal ArticleUsing first-principles electronic structure calculations, we show a metal-semiconduct...
The general objective of the research project is to study the electronic properties of graphene nan...
Resumen del póster presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) de...
The influence of edge structure on the electronic properties of graphene quantum dots and nanoribbon...
The results reported here are from the theoretical investigations of the graphene systems. In select...
YYS acknowledges support from the Funds for Women Graduates (GA-00558). FG and CJB acknowledge suppo...
Properties brought about by lateral in-plane coupling between graphene nanoribbons (GNRs) are invest...
Graphene is a famous truly two-dimensional (2D) material, possessing a cone-like energy structure ne...
We extensively characterize the electronic structure of ultranarrow graphene nanoribbons (GNRs) with...
In this study, we investigate the electronic and magnetic properties of graphane nanoribbons. We fin...
Theoretically, it has been demonstrated that armchair Graphene nanoribbons (GNRs) can be divided int...