材料科学
纳米技术
铁电聚合物
储能
电容器
数码产品
铁电性
桥(图论)
航空航天
智能材料
可穿戴技术
压电
工程物理
系统工程
电活性聚合物
极化(电化学)
可穿戴计算机
计算机科学
电介质
功能性聚合物
智能聚合物
超级电容器
电气工程
能量收集
作者
Mahdi Golriz,Shahab Moghari,Danial Pourheidar,Razhan Salah Othman,Hossein Ali Khonakdar
摘要
ABSTRACT Polymers with electric, dielectric, and ferroelectric properties have become essential materials in a wide range of modern technologies, from flexible electronics and energy storage systems to biomedical devices and smart sensors. Their inherent mechanical flexibility, chemical tunability, lightweight nature, and processability enable their integration into advanced functional materials with tailored performance. In particular, dielectric polymers are widely used in capacitors and insulation layers, ferroelectric polymers provide spontaneous polarization for memory and sensing applications, and conductive polymers serve as flexible alternatives to metallic conductors. This review presents a comprehensive overview of the recent advances and emerging trends in the field of electric, dielectric, and ferroelectric polymeric materials. It discusses the fundamental principles and structural considerations that define their performance, followed by an exploration of their role in six critical application areas: energy storage, wearable electronics, piezoelectric sensors, capacitors, flexible displays, and biomedical systems. Through the integration of recent studies and technological breakthroughs, this review aims to bridge the gap between materials science and device engineering, while highlighting key challenges, current limitations, and promising strategies for future development. The paper concludes with forward‐looking perspectives on how next‐generation polymer systems can be designed to address pressing societal and industrial needs.
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