Demonstrated here is a supramolecular approach to fabricate highly ordered monolayered hydrogen‐ and halogen‐bonded graphyne‐like two‐dimensional (2D) materials from triethynyltriazine derivatives on Au(111) and Ag(111). The 2D networks are stabilized by N⋅⋅⋅H−C(sp) bonds and N⋅⋅⋅Br−C(sp) bonds to the triazine core. The structural properties and the binding energies of the supramolecular graphynes have been investigated by scanning tunneling microscopy in combination with density‐functional theory calculations. It is revealed that the N⋅⋅⋅Br−C(sp) bonds lead to significantly stronger bonded networks compared to the hydrogen‐bonded networks. A systematic analysis of the binding energies of triethynyltriazine and triethynylbenzene derivatives...
The two-dimensional (2D) surface-directed self-assembly of dibenzonitrile diacetylene (DBDA) on Ag(1...
The integration of substitutional dopants at predetermined positions along the hexagonal lattice of ...
Halogen bonding has emerged as a promising tool in two-dimensional (2D) crystal engineering. Since h...
Demonstrated here is a supramolecular approach to fabricate highly ordered monolayered hydrogen- and...
ABSTRACT: Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimension...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
The structure of a crystalline monolayer of 1,3,5-triazine has been characterised using X-ray diffra...
This thesis examines multiple different molecular networks adsorbed on several different substrates,...
The synthesis of two-dimensional organic nanostructures on metal and semiconducting surfaces is stud...
Graphyne-based two-dimensional (2D) carbon allotropes feature extraordinary physical properties; how...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
The behavior of small molecules on a surface depends critically on both molecule–substrate and inter...
Scanning tunnelling microscopy (STM) is commonly used to identify on-surface molecular self-assemble...
The two-dimensional (2D) surface-directed self-assembly of dibenzonitrile diacetylene (DBDA) on Ag(1...
The integration of substitutional dopants at predetermined positions along the hexagonal lattice of ...
Halogen bonding has emerged as a promising tool in two-dimensional (2D) crystal engineering. Since h...
Demonstrated here is a supramolecular approach to fabricate highly ordered monolayered hydrogen- and...
ABSTRACT: Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimension...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
Recently, halogen···halogen interactions have been demonstrated to stabilize two-dimensional supramo...
The structure of a crystalline monolayer of 1,3,5-triazine has been characterised using X-ray diffra...
This thesis examines multiple different molecular networks adsorbed on several different substrates,...
The synthesis of two-dimensional organic nanostructures on metal and semiconducting surfaces is stud...
Graphyne-based two-dimensional (2D) carbon allotropes feature extraordinary physical properties; how...
The adsorption, chemical nature, and self-assembly of diaminotriazinyl- and carboxyl-substituted tri...
The behavior of small molecules on a surface depends critically on both molecule–substrate and inter...
Scanning tunnelling microscopy (STM) is commonly used to identify on-surface molecular self-assemble...
The two-dimensional (2D) surface-directed self-assembly of dibenzonitrile diacetylene (DBDA) on Ag(1...
The integration of substitutional dopants at predetermined positions along the hexagonal lattice of ...
Halogen bonding has emerged as a promising tool in two-dimensional (2D) crystal engineering. Since h...