A comparative morphological study of different ZnO nanostructures was carried out with different varying process parameters for energy harvesting. Molarity, temperature, growth duration and seed layer were such fundamental controlling parameters. The study brings out an outstanding piezoelectric coefficient (d(33)) of 44.33 pm/V for vertically aligned ZnO nanorod structures, considered as the highest reported d(33) value for any kind of ZnO nanostructures. XRD analysis confirms wurtzite nature of this nanorod structure with 0001] as preferential growth direction. Semiconducting characteristic of nanorods was determined with temperature induced I/V characterization
This study presents a comparison of the piezoelectric properties of nanostructured thin films made o...
ZnO is undoubtedly the most versatile binary compound that exhibits a wide variety of morphological ...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
International audienceIn this present work, we have successfully fabricated a piezoelectric structur...
In this work, we evaluated the piezoelectric properties of the ZnO nanorods (NRs), subsequently grow...
A nanogenerator (NG) is an energy harvester device that converts mechanical energy into electrical e...
Zinc oxide (ZnO) nanorods (NRs) are encouraging constituents in a wide range of nanoscale apparatus ...
International audienceUsing a hydrothermal synthesis method, zinc oxide (ZnO) nanowires (NWs) have b...
International audienceIn this study, different seed layers like gold (Au), zinc oxide (ZnO) and alum...
Dynamic integration of aligned nanostructures fabricated on different surfaces has prompted the need...
Emerging nanogenerators have attracted the attention of the research community, focusing on energy g...
© 2015 Farhat et al. We report a facile synthesis of zinc oxide (ZnO) nanorod arrays using an optimi...
Zinc oxide nanowires (ZnO NWs) have gained considerable attention in the field of piezoelectricity i...
DoctorOne-dimensional (1-D) nanostructures, including nanowires, nanorods and nanotubes, have potent...
Vertically aligned zinc oxide (ZnO) hierarchical nanostructures were developed by homo-epitaxial gro...
This study presents a comparison of the piezoelectric properties of nanostructured thin films made o...
ZnO is undoubtedly the most versatile binary compound that exhibits a wide variety of morphological ...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...
International audienceIn this present work, we have successfully fabricated a piezoelectric structur...
In this work, we evaluated the piezoelectric properties of the ZnO nanorods (NRs), subsequently grow...
A nanogenerator (NG) is an energy harvester device that converts mechanical energy into electrical e...
Zinc oxide (ZnO) nanorods (NRs) are encouraging constituents in a wide range of nanoscale apparatus ...
International audienceUsing a hydrothermal synthesis method, zinc oxide (ZnO) nanowires (NWs) have b...
International audienceIn this study, different seed layers like gold (Au), zinc oxide (ZnO) and alum...
Dynamic integration of aligned nanostructures fabricated on different surfaces has prompted the need...
Emerging nanogenerators have attracted the attention of the research community, focusing on energy g...
© 2015 Farhat et al. We report a facile synthesis of zinc oxide (ZnO) nanorod arrays using an optimi...
Zinc oxide nanowires (ZnO NWs) have gained considerable attention in the field of piezoelectricity i...
DoctorOne-dimensional (1-D) nanostructures, including nanowires, nanorods and nanotubes, have potent...
Vertically aligned zinc oxide (ZnO) hierarchical nanostructures were developed by homo-epitaxial gro...
This study presents a comparison of the piezoelectric properties of nanostructured thin films made o...
ZnO is undoubtedly the most versatile binary compound that exhibits a wide variety of morphological ...
Despite its large band gap, ZnO has wide applicability in many fields ranging from gas sensors to so...