Kim Seewoo, Lee Sang-Nam, Melvin Ambrose Ashwin, Choi Jeong-Woo
Department of Chemical and Biomolecular Engineering, Sogang University, 35 Baekbeom-ro, Mapo-gu, Seoul 04107, Republic of Korea.
Uniance Gene Inc., 273, Digital-ro, Guro-gu, Seoul 08381, Republic of Korea.
Polymers (Basel). 2024 Sep 21;16(18):2660. doi: 10.3390/polym16182660.
Polymer actuators are promising, as they are widely used in various fields, such as sensors and soft robotics, for their unique properties, such as their ability to form high-quality films, sensitivity, and flexibility. In recent years, advances in structural and fabrication processes have significantly improved the reliability of polymer sensing-based actuators. Polymer actuators have attracted considerable attention for use in artificial or biohybrid systems, as they have the potential to operate under diverse conditions with high durability. This review briefly describes different types of polymer actuators and provides an understanding of their working mechanisms. It focuses on actuation modes controlled by diverse or multiple stimuli. Furthermore, it discusses the fabrication processes of polymer actuators; the fabrication process is an important consideration in the development of high-quality actuators with sensing properties for a wide range of applications in soft robotics. Additionally, the high potential of polymer actuators for use in sensing technology is examined, and the latest developments in the field of polymer actuators, such as the development of biohybrid polymers and the use of polymer actuators in 4D printing, are briefly described.
聚合物致动器很有前景,因为它们凭借独特性能,如能够形成高质量薄膜、灵敏度和柔韧性,而被广泛应用于各种领域,如传感器和软体机器人技术。近年来,结构和制造工艺的进步显著提高了基于聚合物传感的致动器的可靠性。聚合物致动器在人工或生物混合系统中的应用已引起了相当大的关注,因为它们有可能在各种条件下高耐久性地运行。本文综述简要介绍了不同类型的聚合物致动器,并阐述了其工作机制。重点关注由多种刺激控制的致动模式。此外,还讨论了聚合物致动器的制造工艺;制造工艺是开发具有传感特性的高质量致动器以用于软体机器人技术广泛应用的一个重要考量因素。此外,还研究了聚合物致动器在传感技术中的高潜力,并简要描述了聚合物致动器领域的最新进展,如生物混合聚合物的开发以及聚合物致动器在4D打印中的应用。