Pure- and Pseudo-Lateral-Field-Excitation Characteristics of Relaxor Ferroelectric Single Crystal PMN-PT

Author:

Sun Fei1,Ma Tingfeng1,Kang Pengfei1,Yao Yuming2,Gan Ning3,Yuan Lili1,Hu Wenhui2,Kuznetsova Iren4ORCID,Nedospasov Ilya4

Affiliation:

1. School of Mechanical Engineering and Mechanics, Ningbo University, Ningbo 315211, China

2. Keli Sensing Technology (Ningbo) Co., Ltd., Ningbo 315033, China

3. School of Material Science and Chemical Engineering, Ningbo University, Ningbo 315211, China

4. Kotelnikov Institute of Radio Engineering and Electronics of RAS, Moscow 125009, Russia

Abstract

The relaxor ferroelectric single crystal (1−x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 (PMN-PT) has high piezoelectric constants, and thus has a good application prospect in the field of highly sensitive piezoelectric sensors. In this paper, for relaxor ferroelectric single crystal PMN-PT, the bulk acoustic wave characteristics on pure- and pseudo-lateral-field-excitation (pure- and pseudo-LFE) modes are investigated. LFE piezoelectric coupling coefficients and acoustic wave phase velocities for PMN-PT crystals in different cuts and electric field directions are calculated. On this basis, the optimal cuts of pure-LFE and pseudo-LFE modes of relaxor ferroelectric single crystal PMN-PT are obtained, namely, (zxt)45° and (zxtl)90°/90°, respectively. Finally, finite element simulations are carried out to verify the cuts of pure-LFE and pseudo-LFE modes. The simulation results show that the PMN-PT acoustic wave devices in pure-LFE mode have good energy-trapping effects. For PMN-PT acoustic wave devices in pseudo-LFE mode, when the device is in air, no obvious energy-trapping emerges; when the water (as a virtual electrode) is added to the surface of the crystal plate, an obvious resonance peak and the energy-trapping effect appears. Therefore, the PMN-PT pure-LFE device is suitable for gas-phase detections. While the PMN-PT pseudo-LFE device is suitable for liquid-phase detections. The above results verify the correctness of the cuts of the two modes. The research results provide an important basis for the development of highly sensitive LFE piezoelectric sensors based on relaxor ferroelectric single crystal PMN-PT.

Funder

National Natural Science Foundation of China

Science and Technology Bureau of Ningbo City, Zhejiang Province

Natural Science Foundation of Ningbo City

Zhejiang Provincial Natural Science Foundation of China

Russian Ministry of Science and Higher Education

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Control and Systems Engineering

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