International audienceThe piezoelectric constants of aluminum nitride and zinc oxide wurtzite-type nanowires have been calculated by first-principles approach and compared with the data obtained for bulk structures. The methods adopted here include the Hartree-Fock and density functional theory procedures in their periodic formulation. The piezoelectric response is seen to be higher in nanowires than in bulk. In zinc oxide wires, it is found that the piezoelectric constant is significantly enhanced by partial substitution of zinc by mercury
ZnO has been extensively studied by virtue of its remarkably high piezoelectric responses, especiall...
The increasing demand for portable and low-power electronics for applications in self-powered device...
Online virtual conferenceInternational audiencePiezoelectric semiconductor transducers based on nano...
International audienceNanowires and in general nanostructures present surface energy that makes thei...
International audienceA continuum model of nanowires incorporating surface piezoelectricity is propo...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Zinc oxide (ZnO) nanowires (NWs) as semiconductor piezoelectric nanostructures have emerged as mater...
International audienceThe continuous model of hexagonal wurtzite nanowires is presented[1-4]. This m...
A theoretical model for the radially dependent effective piezoelectric coefficient and corresponding...
Zinc oxide (ZnO) nanowires (NWs) as semiconductor piezoelectric nanostructures have emerged as mater...
The geometric, energetic, electronic structures and optical properties of ZnO nanowires (NWs) with h...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
ZnO has been extensively studied by virtue of its remarkably high piezoelectric responses, especiall...
The increasing demand for portable and low-power electronics for applications in self-powered device...
Online virtual conferenceInternational audiencePiezoelectric semiconductor transducers based on nano...
International audienceNanowires and in general nanostructures present surface energy that makes thei...
International audienceA continuum model of nanowires incorporating surface piezoelectricity is propo...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Nanowires made of materials with non-centrosymmetric crystal structures are expected to be ideal bui...
Zinc oxide (ZnO) nanowires (NWs) as semiconductor piezoelectric nanostructures have emerged as mater...
International audienceThe continuous model of hexagonal wurtzite nanowires is presented[1-4]. This m...
A theoretical model for the radially dependent effective piezoelectric coefficient and corresponding...
Zinc oxide (ZnO) nanowires (NWs) as semiconductor piezoelectric nanostructures have emerged as mater...
The geometric, energetic, electronic structures and optical properties of ZnO nanowires (NWs) with h...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
The wurtzite ZnO material exhibits excellent piezoelectric property along the [0001]-direction becau...
ZnO has been extensively studied by virtue of its remarkably high piezoelectric responses, especiall...
The increasing demand for portable and low-power electronics for applications in self-powered device...
Online virtual conferenceInternational audiencePiezoelectric semiconductor transducers based on nano...