Feng Wei, He Qiguang, Zhang Li
Department of Mechanical and Automation Engineering, The Chinese University of Hong Kong, Hong Kong, China.
Adv Mater. 2025 Jan;37(2):e2312313. doi: 10.1002/adma.202312313. Epub 2024 Mar 27.
Responsive materials possess the inherent capacity to autonomously sense and respond to various external stimuli, demonstrating physical intelligence. Among the diverse array of responsive materials, liquid crystalline polymers (LCPs) stand out for their remarkable reversible stimuli-responsive shape-morphing properties and their potential for creating soft robots. While numerous reviews have extensively detailed the progress in developing LCP-based actuators and robots, there exists a need for comprehensive summaries that elucidate the underlying principles governing actuation and how physical intelligence is embedded within these systems. This review provides a comprehensive overview of recent advancements in developing actuators and robots endowed with physical intelligence using LCPs. This review is structured around the stimulus conditions and categorizes the studies involving responsive LCPs based on the fundamental control and stimulation logic and approach. Specifically, three main categories are examined: systems that respond to changing stimuli, those operating under constant stimuli, and those equip with learning and logic control capabilities. Furthermore, the persisting challenges that need to be addressed are outlined and discuss the future avenues of research in this dynamic field.
响应材料具有自主感知和响应各种外部刺激的内在能力,展现出物理智能。在各种各样的响应材料中,液晶聚合物(LCPs)因其显著的可逆刺激响应形状变形特性以及制造软机器人的潜力而脱颖而出。虽然众多综述已广泛详述了基于LCP的致动器和机器人的开发进展,但仍需要全面总结来阐明驱动的基本原理以及物理智能是如何嵌入这些系统的。本综述全面概述了利用LCP开发具有物理智能的致动器和机器人的最新进展。本综述围绕刺激条件进行构建,并根据基本控制和刺激逻辑及方法对涉及响应性LCP的研究进行分类。具体而言,研究了三个主要类别:对变化刺激作出响应的系统、在恒定刺激下运行的系统以及具备学习和逻辑控制能力的系统。此外,概述了仍需解决的持续挑战,并讨论了这一动态领域未来的研究途径。