materials science

Percolating Multifractal Domains at a Polymorphic Phase Boundary

arXiv:2607.26586

summary

The paper uses large-scale molecular dynamics simulations to demonstrate that a percolating multifractal polar domain network at the polymorphic phase boundary of lead-free (K,Na)NbO3-(Bi,Na)ZrO3 solid solutions governs the giant reversible piezoelectric response.

Abstract

Giant piezoelectricity in ferroelectrics is commonly associated with phase-boundary instabilities, among which the polymorphic phase boundary (PPB) is a prominent example conventionally attributed to the coexistence of ferroelectric phases. Here, using large-scale molecular dynamics simulations of the lead-free (K,Na)NbO3-(Bi,Na)ZrO3 solid solutions, we show that the PPB hosts a percolating multifractal polar domain which governs the dielectric and piezoelectric responses. By quantifying the global fractal dimension and multifractal spectrum width of this polar network, we identify fractal connectivity and multiscale heterogeneity as microstructural order parameters for the PPB. The maximum reversible piezoelectric response occurs when the fractal-domain volume fraction approaches the three-dimensional percolation threshold, suggesting that near-critical polar connectivity enables giant reversible electromechanical coupling. In this mechanism, the fractal backbone preserves polar memory and provides the restoring force required for reversibility, while the surrounding nonfractal regions supply the polar compliance needed for large polarization rotation and strain. These results establish percolating multifractal polar domains as a microscopic mechanism for PPB-enhanced piezoelectricity and suggest fractal connectivity as a design parameter for high-performance piezoelectrics.

16 pages, 4 figures

Topics & keywords

#piezoelectricity#polymorphic phase boundary#multifractal domains#percolation#molecular dynamicsfractal dimensionmultifractal spectrum widthpercolation thresholdlead-free ferroelectricsKNN-BNZ solid solutionsreversible electromechanical coupling
Percolating Multifractal Domains at a Polymorphic Phase Boundary · wovepaper