Wang Zian, Wang Yanan, Yang Chenglin, Zheng Tiantian, Luo Rifang, Wang Yunbing
National Engineering Research Center for Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu, 610064, China.
Research Unit of Minimally lnvasive Treatment of Structural Heart Disease, Chinese Academy of Medical Sciences (No:2021RU013), Beijing, 100730, China.
Macromol Biosci. 2025 Apr 28:e2500033. doi: 10.1002/mabi.202500033.
Piezoelectric materials are unique biomedical materials whose asymmetric crystal structures enable them to convert various forms of mechanical energy from the environment, including ultrasound, into electrical or chemical energy. These materials have wide applications in the biomedical field and are gradually becoming a research hotspot in applications such as energy harvesters, biosensors, and tissue engineering. This article first provides a systematic review of the research progress on piezoelectric materials, then outlines frontier strategies for achieving high-performance electrical materials and devices. This article discusses the highly oriented nature of piezoelectric materials mediated by intermolecular forces and explores the applications of piezoelectric implants in biomedicine, including biosensing, energy harvesting, tissue engineering, and disease treatment. Finally, the challenges faced by piezoelectric devices in future research are elaborated.
压电材料是独特的生物医学材料,其不对称晶体结构使它们能够将来自环境的各种形式的机械能,包括超声波,转化为电能或化学能。这些材料在生物医学领域有广泛应用,并逐渐成为能量收集器、生物传感器和组织工程等应用中的研究热点。本文首先对压电材料的研究进展进行系统综述,然后概述实现高性能电气材料和器件的前沿策略。本文讨论了由分子间力介导的压电材料的高度取向特性,并探讨了压电植入物在生物医学中的应用,包括生物传感、能量收集、组织工程和疾病治疗。最后,阐述了压电器件在未来研究中面临的挑战。