The influence of the surface and small-scale effects on electromechanical coupling behavior of a piezoelectric nanowire is studied by using the beam bending model. An explicit formula for the electromechanical coupling (EMC) coefficient of the piezoelectric nanowire is obtained based on the nonlocal electroelasticity theory. It is found that the inclusion of the nonlocal effect in the model produces a significant difference from the past model which ignores the nonlocal effect in the prediction of the EMC coefficient and the electric field in the nanowire, confirming the significance of including the surface and small-scale effects in the analysis of piezoelectric nanowires. In particular, the influence of surface effects on the electric fi...
In this paper, the governing equation of a piezoelectric semiconductor (PSC) is derived after a cons...
The surface effect in the bending of nanowires (nanobeams), including cantilever nanowires and fixed...
Piezoelectric nanomaterials (PNs) are attractive for applications including sensing, actuating, ener...
The influence of the surface and small-scale effects on electromechanical coupling behavior of a pie...
Piezoelectric semiconductor (PSC) nanowires have a great potential to be the basic element of the ne...
In this letter, we analyze the influence of surface stresses on the vibration and buckling behavior ...
Considerable effort has been made to study the piezoelectric effect on the nanoscale, which serves a...
This paper investigates the influence of surface effects on free transverse vibration of piezoelectr...
Flexoelectricity is a novel kind of electromechanical coupling phenomenon that is prevalent in all s...
AbstractThe surface elasticity and non-local elasticity effects on the elastic behavior of staticall...
This paper investigates the influence of surface effects on free transverse vibration of piezoelectr...
Determining the electric potential in a bent piezoelectric nanowire (NW) is a fundamental issue of n...
In the past two decades, the fact that “small is different” has been established for a wide variety ...
Piezoelectric beam- and plate-based nanostructures hold a promise for device applications in the nan...
With the development of nanotechnology, piezoelectric nanostructures have attracted a surge of inter...
In this paper, the governing equation of a piezoelectric semiconductor (PSC) is derived after a cons...
The surface effect in the bending of nanowires (nanobeams), including cantilever nanowires and fixed...
Piezoelectric nanomaterials (PNs) are attractive for applications including sensing, actuating, ener...
The influence of the surface and small-scale effects on electromechanical coupling behavior of a pie...
Piezoelectric semiconductor (PSC) nanowires have a great potential to be the basic element of the ne...
In this letter, we analyze the influence of surface stresses on the vibration and buckling behavior ...
Considerable effort has been made to study the piezoelectric effect on the nanoscale, which serves a...
This paper investigates the influence of surface effects on free transverse vibration of piezoelectr...
Flexoelectricity is a novel kind of electromechanical coupling phenomenon that is prevalent in all s...
AbstractThe surface elasticity and non-local elasticity effects on the elastic behavior of staticall...
This paper investigates the influence of surface effects on free transverse vibration of piezoelectr...
Determining the electric potential in a bent piezoelectric nanowire (NW) is a fundamental issue of n...
In the past two decades, the fact that “small is different” has been established for a wide variety ...
Piezoelectric beam- and plate-based nanostructures hold a promise for device applications in the nan...
With the development of nanotechnology, piezoelectric nanostructures have attracted a surge of inter...
In this paper, the governing equation of a piezoelectric semiconductor (PSC) is derived after a cons...
The surface effect in the bending of nanowires (nanobeams), including cantilever nanowires and fixed...
Piezoelectric nanomaterials (PNs) are attractive for applications including sensing, actuating, ener...