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Polarization and Strain in Piezoelectric Nanomaterials: Advancing Sensing Applications in Biomedical Technology | IEEE Journals & Magazine | IEEE Xplore

Polarization and Strain in Piezoelectric Nanomaterials: Advancing Sensing Applications in Biomedical Technology


Abstract:

This paper reports the comparative analysis of different piezoelectric materials through a MEMS-based piezoelectric actuator model, emphasizing their potential for sensin...Show More

Abstract:

This paper reports the comparative analysis of different piezoelectric materials through a MEMS-based piezoelectric actuator model, emphasizing their potential for sensing applications. The polarization and electrostrictive strain tensor capabilities have been extensively studied for different piezoelectric materials such as PZT, LiNbO3, PVDF, etc. The simulation results obtained at varying voltages and mechanical stress demonstrate that LiNbO3 exhibits superior performance among the tested materials, with a polarization value of 0.5163 C/m2 at 800 volts and an electrostrictive strain tensor of 0.01 at an applied mechanical stress of 25 MPa. These findings will assist scientists in selecting the most suitable piezoelectric materials for sensing applications in biomedical fields.
Published in: IEEE Open Journal of Nanotechnology ( Volume: 5)
Page(s): 89 - 97
Date of Publication: 30 October 2024
Electronic ISSN: 2644-1292

Funding Agency:


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