Effective Piezoelectric Response of Substrate-Integrated ZnO Nanowire Array Devices on Galvanized Steel

Harvesting waste energy through electromechanical coupling in practical devices requires combining device design with the development of synthetic strategies for large-area controlled fabrication of active piezoelectric materials. Here, we show a facile route to the large-area fabrication of ZnO nan...

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Veröffentlicht in:ACS applied materials & interfaces 2013-11, Vol.5 (21), p.10650-10657
Hauptverfasser: Velazquez, By Jesus M, Baskaran, Sivapalan, Gaikwad, Anil V, Ngo-Duc, Tam-Triet, He, Xiangtong, Oye, Michael M, Meyyappan, M, Rout, Tapan K, Fu, John Y, Banerjee, Sarbajit
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Sprache:eng
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Zusammenfassung:Harvesting waste energy through electromechanical coupling in practical devices requires combining device design with the development of synthetic strategies for large-area controlled fabrication of active piezoelectric materials. Here, we show a facile route to the large-area fabrication of ZnO nanostructured arrays using commodity galvanized steel as the Zn precursor as well as the substrate. The ZnO nanowires are further integrated within a device construct and the effective piezoelectric response is deduced based on a novel experimental approach involving induction of stress in the nanowires through pressure wave propagation along with phase-selective lock-in detection of the induced current. The robust methodology for measurement of the effective piezoelectric coefficient developed here allows for interrogation of piezoelectric functionality for the entire substrate under bending-type deformation of the ZnO nanowires.
ISSN:1944-8244
1944-8252
DOI:10.1021/am402679w