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Published in: Microsystem Technologies 9/2018

19-03-2018 | Technical Paper

Comparison of piezoelectric energy harvesting performance using silicon and graphene cantilever beam

Authors: Li Theng Lee, Mohd Ambri Mohamed, Iskandar Yahya, Jothiramalingam Kulothungan, Manoharan Muruganathan, Hiroshi Mizuta

Published in: Microsystem Technologies | Issue 9/2018

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Abstract

A bulky battery is often an obstacle in microelectromechanical systems design. Not only does it occupy large space, but also contributes to environmental pollution. Thus, piezoelectric energy harvester presents as an eco-friendly alternative power source. A piezoelectric energy harvester with graphene as base layer with different thickness is modeled using finite element simulations. Frequency response analysis is performed for a better understanding of its performance. From the result, higher thickness gives better Q-factor and figure of merit (FOM). A 200 nm of ZnO layer and graphene layer gives a Q-factor and FOM of 3.4 times higher than silicon and also a larger bandwidth by a factor of 1.1. In general, it is shown that the replacement of silicon with graphene had reduced energy loss by improving the efficiency of mechanical energy transfer in piezoelectric energy harvester.

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Literature
go back to reference Graak P, Gupta A, Chhabra P, Kumar D, Shetty A (2015) Design and simulation of various shapes of cantilever for piezoelectric power generator by using COMSOL. In: COMSOL conference. COMSOL, Pune, p 6 Graak P, Gupta A, Chhabra P, Kumar D, Shetty A (2015) Design and simulation of various shapes of cantilever for piezoelectric power generator by using COMSOL. In: COMSOL conference. COMSOL, Pune, p 6
go back to reference IntelliSense (2017) IntelliSense-Total MEMS Solutions Intellisuite Software. http://www.intellisense.com. Accessed 10 Sept 2017 IntelliSense (2017) IntelliSense-Total MEMS Solutions Intellisuite Software. http://​www.​intellisense.​com.​ Accessed 10 Sept 2017
Metadata
Title
Comparison of piezoelectric energy harvesting performance using silicon and graphene cantilever beam
Authors
Li Theng Lee
Mohd Ambri Mohamed
Iskandar Yahya
Jothiramalingam Kulothungan
Manoharan Muruganathan
Hiroshi Mizuta
Publication date
19-03-2018
Publisher
Springer Berlin Heidelberg
Published in
Microsystem Technologies / Issue 9/2018
Print ISSN: 0946-7076
Electronic ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-018-3857-7

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