AbstractUsing vertically grown hydrothermal ZnO nanowires, we demonstrate the assembly of fully functional piezoelectric energy harvesters on plastics substrates. A seedless hydrothermal process is employed for the growth of single crystalline vertically orientated ZnO NWs at around 100oC. Flexible NG are assembled using ∼7μm thick PDMS polymer matrix on a 3x3cm substrate. A representative device with an active area of 4cm2 is characterised revealing average output voltage generation of ∼22mV (±1.2) and -32mV (±0.16) in the positive and negative cycles after 3-4mm periodic deflection at 20Hz. A power density of ∼288nW/cm3 is estimated for the device. It is envisaged that such energy scavengers may find potential applications targeting self-...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
International audienceUsing vertically grown hydrothermal ZnO nanowires, we demonstrate the assembly...
International audienceFlexible piezoelectric nanogenerators (PENGs) are very attractive for mechanic...
A flexible and robust piezoelectric nanogenerator (NG) based on a polymer-ceramic nanocomposite stru...
International audienceThe present work demonstrates the production of single crystalline ZnO nanowir...
In this paper, we report a novel piezoelectric ZnO nanogenerator on flexible metal alloy substrate (...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceThe present work describes the seedless approach for the growth of ZnO nanowir...
AbstractThe present work investigates the possibility to charge a Lithium micro-battery (LiB) via di...
International audienceThe present work investigates the possibility to charge a Lithium micro-batter...
A piezoelectric nanogenerator has been fabricated using a simple, fast and scalable template-assiste...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
International audienceUsing vertically grown hydrothermal ZnO nanowires, we demonstrate the assembly...
International audienceFlexible piezoelectric nanogenerators (PENGs) are very attractive for mechanic...
A flexible and robust piezoelectric nanogenerator (NG) based on a polymer-ceramic nanocomposite stru...
International audienceThe present work demonstrates the production of single crystalline ZnO nanowir...
In this paper, we report a novel piezoelectric ZnO nanogenerator on flexible metal alloy substrate (...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceFrom the multitude of nanostructures under active research, Zinc Oxide (ZnO) n...
International audienceThe present work describes the seedless approach for the growth of ZnO nanowir...
AbstractThe present work investigates the possibility to charge a Lithium micro-battery (LiB) via di...
International audienceThe present work investigates the possibility to charge a Lithium micro-batter...
A piezoelectric nanogenerator has been fabricated using a simple, fast and scalable template-assiste...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...
Energy harvesting using piezoelectric nanomaterials provides an opportunity for advancement towards ...