Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed laser irradiation (100 fs duration, 800 nm wavelength, 1.44 J/cm² single pulse fluence) to analyse the evolution of induced alterations on the surface morphology and structural properties. The aim was to identify the occurrence of laser-induced periodic surface structures (LIPSS) as a function of the number of pulses released on the unit area. Micro-Raman spectroscopy pointed out an increase in the graphite surface content of the films following the laser irradiation due to the formation of ordered carbon sites with respect to the pristine sample. SEM and AFM surface morphology studies allowed the determination of two different types of surface p...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
We study the evolution of periodic nanostructures formed on the surface of diamond by femtosecond la...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
We study the evolution of periodic nanostructures formed on the surface of diamond by femtosecond la...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Polycrystalline boron-doped diamond (BDD) films were surface nanotextured by femtosecond pulsed lase...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
Diamond is a wide bandgap semiconductor with excellent physical properties which allow it to operate...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
Diamond is known as a promising electrode material in the fields of cell stimulation, energy storage...
High spatial frequency laser induced periodic surface structure (HSFL) morphology induced by femtose...
We study the evolution of periodic nanostructures formed on the surface of diamond by femtosecond la...