A novel ZnO piezoelectric microcantilever energy scavenger: Fabrication and characterization
Deepak Bhatia, Himanshu Sharma, R.S.Meena, V.R Palkar

TL;DR
This paper presents a new, cost-effective fabrication method for ZnO piezoelectric microcantilevers that can harvest vibrational energy to power nano devices and sensors, with promising applications in medical and agricultural fields.
Contribution
The study introduces a novel micromachining fabrication process for ZnO microcantilevers that is simpler and cheaper than existing methods, enabling efficient energy harvesting.
Findings
Piezoelectric coefficient d31 of 3.32 pC/N measured
Voltage induced of approximately 230 mV observed
Linear dynamic response to applied voltage
Abstract
This novel piezoelectric zinc oxide (ZnO) thin film microcantilever was fabricated by micromachining technique. To release the cantilever, wet anisotropic etching of Silicon (Si) was performed by tetramethyl ammonium hydroxide (TMAH). The transverse piezoelectric coefficient d31 of the ZnO film, obtained from the deflection of the cantilever with influence of applied voltage, was calculated as 3.32 pC/N. The observed dynamic characterization of the novel piezoelectric microcantilever had linear response with the applied driving voltage. The obtained values of Young Modulus and Hardness were 208 +4 GPa and 4.84+ 0.1 GPa respectively. This inexpensive novel method provides additional design flexibility to fabricate vibrational energy harvesters. The easy steps of fabrication and cost effectiveness of this method may be preferred it over DRIE. The voltage induced due to deformation of ZnO…
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Taxonomy
TopicsAdvanced Sensor and Energy Harvesting Materials · Gas Sensing Nanomaterials and Sensors · Innovative Energy Harvesting Technologies
