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Flexible nanogenerators for self-powered touch and light sensor applications

Authors
Lee K.Y.[Lee K.Y.]Choi D.[Choi D.]Choi J.-Y.[Choi J.-Y.]Kim S.-W.[Kim S.-W.]
Issue Date
2011
Keywords
Conjugated Polymer; Hybrid Cell; Light Sensor; Nanogenerator; Piezoelectricity; Touch Sensor; ZnO
Citation
Proceedings of SPIE - The International Society for Optical Engineering, v.7945
Indexed
SCOPUS
Journal Title
Proceedings of SPIE - The International Society for Optical Engineering
Volume
7945
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/71688
DOI
10.1117/12.872900
ISSN
0277-786X
Abstract
Here we report a flexible piezoelectric nanodevices (nanogenerators) that can be utilized as both a touch sensor and a light sensor on a single platform. Based on the electron transporting and piezoelectric properties of ZnO, nanogenerators with a ZnO/conjugated polymer stacked structure was designed on a plastic substrate. Piezoelectric touch signals were demonstrated under independent and simultaneous operations with respect to photo-induced charges (photodetection). Different levels of piezoelectric output signals from different magnitude of touching pressures suggest new user-interface functions from our hybrid nanogenerators. From a signal controller, the decoupled performance of a hybrid nanogenerator as a touch sensor and a light sensor was confirmed. Our hybrid approach does not require additional assembling processes for such multiplex systems of a touch sensor and a light sensor since we utilize the coupled material properties of ZnO and output signal processing. Moreover, it should be noted that the hybrid nanogenerator can be operated in a self-powered mode without any power supply. © 2011 SPIE.
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