Generalized Dynamic Analytical Model of Piezoelectric Materials for Characterization Using Electrical Impedance Spectroscopy.
TL;DR: This work presents a generalized dynamic analytical model based on first-principles that is efficiently computable and better describes these exciting materials, including higher-order coupling effects, and accurately predicts the experimentally observed impedance spectrum.
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Abstract: Piezoelectric materials have the intrinsic reversible ability to convert a mechanical strain into an electric field and their applications touch our daily lives. However, the complex physical mechanisms linking mechanical and electrical properties make these materials hard to understand. Computationally onerous models have historically been unable to adequately describe dynamic phenomena inside real piezoelectric materials, and are often limited to over-simplified first-order analytical, quasi-static, or unsatisfying phenomenological numerical approaches. We present a generalized dynamic analytical model based on first-principles that is efficiently computable and better describes these exciting materials, including higher-order coupling effects. We illustrate the significance of this model by applying it to the important 3m crystal symmetry class of piezoelectric materials that includes lithium niobate, and show that the model accurately predicts the experimentally observed impedance spectrum. This dynamic behavior is a function of almost all intrinsic properties of the piezoelectric material, so that material properties, including mechanical, electrical, and dielectric coefficients, can be readily and simultaneously extracted for any size crystal, including at the nanoscale; the only prior knowledge required is the crystal class of the material system. In addition, the model’s analytical approach is general in nature, and can increase our understanding of traditional and novel ferroelectric and piezoelectric materials, regardless of crystal size or orientation.
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Citations
Characterization of the Elastic, Piezoelectric, and Dielectric Properties of Lithium Niobate from 25 °C to 900 °C Using Electrochemical Impedance Spectroscopy Resonance Method
TL;DR: In this article , a set of elastic and piezoelectric coefficients, as well as complex dielectric constants and the electrical conductivity, for congruent monocrystalline LiNbO3 from 25 °C to 900 °C at atmospheric pressure were derived using the electrochemical impedance spectroscopy (EIS) resonance method.
The Radial Electric Field Excited Circular Disk Piezoceramic Acoustic Resonator and Its Properties.
TL;DR: In this article, a new type of piezoceramic acoustic resonator in the form of a circular disk with a radial exciting electric field is presented, which makes it possible to use such a resonator as a sensor base for analyzing the properties of this medium.
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Characterization of Pure Face-Shear Strain in Piezoelectric α-Tellurium Dioxide (α-TeO2)
Guillaume Boivin,Pierre Belanger,Ricardo J. Zednik +2 more
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TL;DR: In this paper, the authors leverage a first-principles analytical physical model with electrochemical impedance spectroscopy (EIS) to determine, directly, the lone piezoelectric coefficient d123 = d14 = 7.92 pC/N.
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The Study of the Acoustic Characteristics of Chitosan Acetate Film Using a Radial Electric Field Excited Resonator
TL;DR: In this paper , a radial electric field excited disk acoustic resonator of Russian-made barium plumbum zirconate titanate (BPZT) piezoceramics was used to determine the elastic modulus, viscosity, and conductivity of the chitosan acetate film in air and ammonia vapors of various concentrations.
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Elastic, dielectric, and piezoelectric losses in piezoceramics: how it works all together
TL;DR: The extended definition of the PT electromechanical quality factor (EMQ) with permanent energy exchange between electrical source of excitation and PT was proposed and optimization of PT excitation with connected reactive (capacitive) element was conducted to provide higher PT mechanical vibrational characteristics with less total losses.
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Piezoelectric PVDF films as ultrasonic transducers
A Ambrosy,K Holdik +1 more
TL;DR: In this paper, a new method to prepare ultrasonic transducers by solution casting or solvent bonding of the piezoelectric polymer polyvinylidene fluoride (PVDF) is reported.
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Surface acoustic wave devices on bulk ZnO crystals at low temperature
E. B. Magnusson,Benjamin H. Williams,Riccardo Manenti,M.-S. Nam,Ani Nersisyan,Michael Peterer,Arzhang Ardavan,Peter Leek +7 more
TL;DR: In this article, the authors demonstrate effective surface acoustic wave (SAW) devices on the (0001) surface of bulk ZnO crystals, including a delay line operating at SAW wavelengths of λ 4 and 6 µm and a one-port resonator at a wavelength of −1.6 µm.
Analysis of shear modes in a piezoelectric vibrator
TL;DR: In this article, a shear piezoelectric vibrator has been analyzed in detail and two types of shear motion associated with the same shear stain deformation were found to be related directly to the aspect ratio of the vibrator.
52
Investigations on the thermal and piezoelectric properties of fresnoite Ba2TiSi2O8 single crystals
Chuanying Shen,Chuanying Shen,Huaijin Zhang,Hengjiang Cong,Haohai Yu,Jiyang Wang,Shujun Zhang +6 more
TL;DR: In this paper, the authors used the Czochralski technique to grow fresnoite crystals with the nominal composition Ba2TiSi2O8 (BTS) and determined the full matrix material constants based on the IEEE standards.
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