Tang Jiadong, Cheng Yibo, Ding Muhua, Wang Chen
School of Chemistry and Molecular Engineering, East China Normal University, Shanghai, 200241, China.
Chongqing Key Laboratory of Precision Optics, Chongqing Institute of East China Normal University, Chongqing, 401120, China.
Chempluschem. 2023 Dec;88(12):e202300449. doi: 10.1002/cplu.202300449. Epub 2023 Oct 18.
Inspired from dynamic living systems that operate under out-of-equilibrium conditions in biology, developing supramolecular hydrogels with self-regulating and autonomously dynamic properties to further advance adaptive hydrogels with life-like behavior is important. This review presents recent progress of bio-inspired supramolecular hydrogels out-of-equilibrium. The principle of out-of-equilibrium self-assembly for creating bio-inspired hydrogels is discussed. Various design strategies have been identified, such as chemical-driven reaction cycles with feedback control and physically oscillatory systems. These strategies can be coupled with hydrogels to achieve temporal and spatial control over structural and mechanical properties as well as programmable lifetime. These studies open up huge opportunities for potential applications, such as fluidic guidance, information storage, drug delivery, actuators and more. Finally, we address the challenges ahead of us in the coming years, and future possibilities and prospects are identified.
受生物学中在非平衡条件下运行的动态生命系统的启发,开发具有自我调节和自主动态特性的超分子水凝胶以进一步推进具有类生命行为的自适应水凝胶非常重要。本文综述了受生物启发的非平衡超分子水凝胶的最新进展。讨论了用于创建受生物启发的水凝胶的非平衡自组装原理。已经确定了各种设计策略,例如具有反馈控制的化学驱动反应循环和物理振荡系统。这些策略可以与水凝胶相结合,以实现对结构和机械性能以及可编程寿命的时空控制。这些研究为潜在应用开辟了巨大机遇,如流体引导、信息存储、药物递送、致动器等。最后,我们阐述了未来几年面临的挑战,并确定了未来的可能性和前景。