AbstractFacile aqueous growth technique was adopted to grow diameter controlled 150nm ZnO nanowires on an ITO (indium tin oxide) coated PET (poly ethylene terephthalate) substrate. Prior to nanowire growth, a pure wurtazite structured ZnO seed layer was grown on PET substrates. Surface morphology and elemental composition were investigated by SEM (scanning electron microscopy) and EDS (energy dispersive spectroscopy) respectively. An enhanced output piezoelectric potential of 1.858 with an output power density 215.4mW/cm2 was achieved using a Pt sputtered electrode. We have obtained enhanced values of output voltage compared to our previously reported voltage values of 1.34V (Ahmad et al. 2014)
Biomechanical energy harvested from the human body can power implantable electronics such as cardiac...
AbstractThe present work investigates the possibility to charge a Lithium micro-battery (LiB) via di...
ZnO based nanowire FETs have been fabricated by implementing a top-down approach, which uses optical...
© 2015. Facile aqueous growth technique was adopted to grow diameter controlled 150 nm ZnO nanowires...
AbstractFacile aqueous growth technique was adopted to grow diameter controlled 150nm ZnO nanowires ...
© 2017 Elsevier Ltd 50nm ZnO nanowires were grown on indium tin oxide (ITO) coated poly ethylene ter...
High-quality single crystalline zinc oxide nanowires were grown on silver and gold coated plastic su...
Flexible piezoelectric energy harvester devices for biomedical applications have been developed and ...
International audienceFlexible piezoelectric nanogenerators (PENGs) are very attractive for mechanic...
Zinc oxide nanowires are a semiconducting material that has many uses in electronic applications. In...
Abstract Nano/micro scale devices have attracted a lot of interest due to the emergence of wearable...
672-676A low temperature hydrothermal technique is developed to grow ZnO (diameter 100 nm) nanowire...
International audienceIn this study, different seed layers like gold (Au), zinc oxide (ZnO) and alum...
International audienceUsing a hydrothermal synthesis method, zinc oxide (ZnO) nanowires (NWs) have b...
Piezoelectric nanogenerators were created using two designs: coating carbon nanotubes (CNTs) grown o...
Biomechanical energy harvested from the human body can power implantable electronics such as cardiac...
AbstractThe present work investigates the possibility to charge a Lithium micro-battery (LiB) via di...
ZnO based nanowire FETs have been fabricated by implementing a top-down approach, which uses optical...
© 2015. Facile aqueous growth technique was adopted to grow diameter controlled 150 nm ZnO nanowires...
AbstractFacile aqueous growth technique was adopted to grow diameter controlled 150nm ZnO nanowires ...
© 2017 Elsevier Ltd 50nm ZnO nanowires were grown on indium tin oxide (ITO) coated poly ethylene ter...
High-quality single crystalline zinc oxide nanowires were grown on silver and gold coated plastic su...
Flexible piezoelectric energy harvester devices for biomedical applications have been developed and ...
International audienceFlexible piezoelectric nanogenerators (PENGs) are very attractive for mechanic...
Zinc oxide nanowires are a semiconducting material that has many uses in electronic applications. In...
Abstract Nano/micro scale devices have attracted a lot of interest due to the emergence of wearable...
672-676A low temperature hydrothermal technique is developed to grow ZnO (diameter 100 nm) nanowire...
International audienceIn this study, different seed layers like gold (Au), zinc oxide (ZnO) and alum...
International audienceUsing a hydrothermal synthesis method, zinc oxide (ZnO) nanowires (NWs) have b...
Piezoelectric nanogenerators were created using two designs: coating carbon nanotubes (CNTs) grown o...
Biomechanical energy harvested from the human body can power implantable electronics such as cardiac...
AbstractThe present work investigates the possibility to charge a Lithium micro-battery (LiB) via di...
ZnO based nanowire FETs have been fabricated by implementing a top-down approach, which uses optical...