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January 18, 2026Advanced Physics Research0 citationsOpen Access

Advances in Regulating Strategies and Applications of Ferroelectric Materials

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JJJianying JiCLCong LiuDLDan Luo

Key Points

  • The research aims to summarize strategies for controlling the performance of ferroelectric materials for various applications.
  • Summarizes key strategies for tailoring ferroelectric properties.
  • Focuses on external field manipulation and low-dimensional confinement.
  • Covers interface engineering and topological structuring.
  • Highlights advances in applications like memory, neuromorphic computing, and energy conversion.
  • Identifies effective methods to enhance ferroelectric performance.
  • Describes applications in data storage, sensing, and catalysis.
  • Suggests future research directions for next-generation materials.

Abstract

ABSTRACT Ferroelectric materials, characterized by their spontaneous and reversible polarization under an electric field, have attracted extensive research interest. Their unique properties render them ideal for applications ranging from data storage and energy harvesting to sensing and catalysis. Driven by the demand for miniaturized and energy‐efficient nanoelectronic devices, precise control over ferroelectric performance has become a central focus. This review comprehensively summarizes key strategies for tailoring ferroelectric properties, with a focus on external field manipulation, low‐dimensional confinement, interface engineering, and topological structuring. We subsequently highlight recent advances in cutting‐edge applications in memory, neuromorphic computing, sensors, energy conversion, and catalysis. Finally, we present future research directions to guide the development of next‐generation ferroelectric materials and devices.

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Cite This Study

Ji et al. (2026) studied this question.

synapsesocial.com/papers/696c785beb60fb80d13968achttps://doi.org/10.1002/apxr.202500196
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1A Review of Engineered Ferroelectric Materials: Synthesis Approaches, Physical Properties, and Technological Applications2026
  2. 2Two-Dimensional Ferroelectric Materials: Synthesis, Characterization and Applications2024
  3. 3Thin Ferroelectric Materials for Memory Devices2025
  4. 4Ferroelectric Materials Opportunities and Challenges in Modern Computing2024
  5. 5Interface engineering in ferroelectric films2026