Please use this identifier to cite or link to this item: http://localhost:8080/xmlui/handle/123456789/3915
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dc.contributor.authorManjula, Y.-
dc.contributor.authorRajaboina, Rakesh Kumar-
dc.contributor.authorRaju, P. Missak Swarup-
dc.contributor.authorAnil Kumar, G.-
dc.contributor.authorRao, T. Venkatappa-
dc.contributor.authorAkshaykranth, A.-
dc.contributor.authorSupraja, P.-
dc.date.accessioned2026-03-26T06:45:12Z-
dc.date.available2026-03-26T06:45:12Z-
dc.date.issued2020-
dc.identifier.citation10.1016/j.chemphys.2020.110699en_US
dc.identifier.urihttp://localhost:8080/xmlui/handle/123456789/3915-
dc.descriptionNITWen_US
dc.description.abstractHere, we report the simple and flexible nanogenerator based on ZnO nanosheet networks. ZnO nanosheets are synthesized by simple, cost-effective and single-step hydrothermal method on flexible conducting Aluminum substrates at a low growth temperature of 80 °C. Nanogenerator is fabricated using ZnO nanosheet networks as an active piezoelectric element with necessary electrodes. Fabricated nanogenerator tested under real-time mechanical forces such as finger tapping, muscle stretching, foot pressure, and mechanical bending. Nanogenerator output was verified by switching polarity and superposition tests and tests confirmed piezoelectric voltage. Fabricated nanogenerators produced open circuit voltage above 100 mV for the single device and 400 mV for four devices connected in series. The simplicity of this method and the reasonable output voltage of the cascaded nanogenerators are useful in practical energy harvesting for future needs.en_US
dc.language.isoenen_US
dc.publisherChemical Physicsen_US
dc.subjectPiezoelectric materialsen_US
dc.subjectEnergy storage and conversionen_US
dc.subjectZnO nanosheetsen_US
dc.subjectNanogeneratoren_US
dc.subjectFlexible substratesen_US
dc.titlePiezoelectric flexible nanogenerator based on ZnO nanosheet networks for mechanical energy harvestingen_US
dc.typeArticleen_US
Appears in Collections:Physics

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