Amongst the different existing methods to passivate black phosphorus (BP) from environmental degradation, the noncovalent functionalization with perylene diimides (PDI) has been postulated as one of the most promising routes because it allows preserving its electronic properties. This work describes the noncovalent functionalization and outstanding environmental protection of BP with tailor made PDI having peri-amide aromatic side chains, which include phenyl and naphthyl groups, exhibiting a significantly increased molecule-BP interaction. These results are rationalized by density functional theory (DFT) calculations showing that the adsorption energies are mainly governed by van der Waals (vdW) interactions and increase concomitantly with...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Antimonene, a novel group 15 two-dimensional material, is functionalized with a tailormade perylene ...
Layered black phosphorus (BP) has been expected to be a promising material for future electronic and...
Amongst the different existing methods to passivate black phosphorus (BP) from environmental degrada...
The noncovalent functionalization of two-dimensional black phosphorus (BP) with tailor made perylene...
Overcoming the intrinsic instability and preserving unique electronic properties are key challenges ...
Few-layer black phosphorus (FL-BP) has been intensively studied due to its attractive properties and...
The air instability of black phosphorus (BP) severely hinders the development of its electronic and ...
The chemical functionalization is proven to be an effective and controllable approach to modify the ...
An interface between poly(methyl-methacrylate) PMMA-supported phosphorene and layers of linear alkan...
The post-graphene era is undoubtedly marked by two-dimensional (2D) sheet polymers, such as black ph...
Since the isolation of two-dimensional (2D) phosphorene, black phosphorus (BP) has gained popularity...
Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctio...
Few-layer black phosphorus (BP) has attracted much attention due to its high mobility and suitable b...
© 2017 The Author(s). The limited stability of the surface of black phosphorus (BP) under atmospheri...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Antimonene, a novel group 15 two-dimensional material, is functionalized with a tailormade perylene ...
Layered black phosphorus (BP) has been expected to be a promising material for future electronic and...
Amongst the different existing methods to passivate black phosphorus (BP) from environmental degrada...
The noncovalent functionalization of two-dimensional black phosphorus (BP) with tailor made perylene...
Overcoming the intrinsic instability and preserving unique electronic properties are key challenges ...
Few-layer black phosphorus (FL-BP) has been intensively studied due to its attractive properties and...
The air instability of black phosphorus (BP) severely hinders the development of its electronic and ...
The chemical functionalization is proven to be an effective and controllable approach to modify the ...
An interface between poly(methyl-methacrylate) PMMA-supported phosphorene and layers of linear alkan...
The post-graphene era is undoubtedly marked by two-dimensional (2D) sheet polymers, such as black ph...
Since the isolation of two-dimensional (2D) phosphorene, black phosphorus (BP) has gained popularity...
Black phosphorus (bP) has been recently investigated for next generation nanoelectronic multifunctio...
Few-layer black phosphorus (BP) has attracted much attention due to its high mobility and suitable b...
© 2017 The Author(s). The limited stability of the surface of black phosphorus (BP) under atmospheri...
Two-dimensional (2D) materials have been studied widely owing to their outstanding properties since ...
Antimonene, a novel group 15 two-dimensional material, is functionalized with a tailormade perylene ...
Layered black phosphorus (BP) has been expected to be a promising material for future electronic and...