Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior rooted in the s–p orbital hybridization, distinctively different from other 2D materials such as sulfides/selenides and semi-metallic graphene. This unique feature of borophene implies new routes for charge delocalization and band gap opening. Herein, using first-principles calculations, we explore the routes to localize the carriers and open the band gap of borophene via chemical functionalization, ribbon construction, and defect engineering. The metallicity of borophene is found to be remarkably robust against H- and F-functionalization and the presence of vacancies. Interestingly, a strong odd–even oscillation of the electronic structure with w...
Two dimensional materials are attracting new research for optoelectronics and spintronics due to the...
Investigating and comparing structural, electronic and optical properties of chi-3-Borophene in mono...
Borophene, a monolayer of boron, has risen as a new exciting two−dimensional (2D) material having ex...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
An electron-counting strategy starting from magnesium boride was used to show the inevitability of h...
[[abstract]]Engineering atomic-scale structures allows great manipulation of physical properties and...
Due to its low atomic weight, two-dimensional structure, and unique physical and chemical properties...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Materials Sci...
Two dimensional materials are attracting new research for optoelectronics and spintronics due to the...
Investigating and comparing structural, electronic and optical properties of chi-3-Borophene in mono...
Borophene, a monolayer of boron, has risen as a new exciting two−dimensional (2D) material having ex...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
An electron-counting strategy starting from magnesium boride was used to show the inevitability of h...
[[abstract]]Engineering atomic-scale structures allows great manipulation of physical properties and...
Due to its low atomic weight, two-dimensional structure, and unique physical and chemical properties...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
International audienceEngineering atomic-scale structures allows great manipulation of physical prop...
Cataloged from PDF version of article.Thesis (M.S.): Bilkent University, Department of Materials Sci...
Two dimensional materials are attracting new research for optoelectronics and spintronics due to the...
Investigating and comparing structural, electronic and optical properties of chi-3-Borophene in mono...
Borophene, a monolayer of boron, has risen as a new exciting two−dimensional (2D) material having ex...