[[abstract]]Engineering atomic-scale structures allows great manipulation of physical properties and chemical processes for advanced technology. We show that the B atoms deployed at the centers of honeycombs in boron sheets, borophene, behave as nearly perfect electron donors for filling the graphitic σ bonding states without forming additional in-plane bonds by first-principles calculations. The dilute electron density distribution owing to the weak bonding surrounding the center atoms provides easier atomic-scale engineering and is highly tunable via in-plane strain, promising for practical applications, such as modulating the extraordinarily high thermal conductance that exceeds the reported value in graphene. The hidden honeycomb bondin...
Graphene-like borophene was theoretically proposed and recently synthesized on Al (111) surface, how...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...
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...
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...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Recent success in the synthesis of the two-dimensional borophene on silver substrates has attracted ...
We study the effect of electron doping on the bonding character and stability of two-dimensional (2D...
The realization of buckled monolayer sheets of boron (i.e., borophene) and its other polymorphs has ...
Elemental boron is electron-deficient and cannot form graphene-like structures. Instead, triangular ...
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...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...
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...
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...
Recently synthesized two-dimensional (2D) boron, borophene, exhibits a novel metallic behavior roote...
Recent success in the synthesis of the two-dimensional borophene on silver substrates has attracted ...
We study the effect of electron doping on the bonding character and stability of two-dimensional (2D...
The realization of buckled monolayer sheets of boron (i.e., borophene) and its other polymorphs has ...
Elemental boron is electron-deficient and cannot form graphene-like structures. Instead, triangular ...
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...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...
Recently synthesized atomically thin boron sheets (that is, borophene) provide a fascinating templat...