Laboratory of Functional Organic Materials & Devices, Department of Chemical Engineering & Chemistry, Eindhoven University of Technology, Den Dolech 2, 5612 AZ Eindhoven, The Netherlands.
Soft Matter. 2018 Jun 20;14(24):4898-4912. doi: 10.1039/c8sm00524a.
In analogy with developments in soft robotics it is anticipated that soft robotic functions at surfaces of objects may have a large impact on human life with respect to comfort, health, medical care and energy. In this review, we demonstrate the possibilities and versatilities of liquid crystal networks and elastomers being explored for soft robotics, with an emphasis on motile surface properties, such as topographical dynamics. Typically the surfaces reversibly transfer from a flat state to a pre-designed corrugated state under various stimuli. But also reversible conversion between different corrugated states is feasible. Generally, the driving triggers are heat, light, electricity or contact with pH changing media. Also, the macroscopic effects of those dynamic topographies, such as altering the friction, wettability and/or performing work are illustrated. The review concludes with the existing challenges as well as outlook opportunities.
与软机器人技术的发展类似,人们预计物体表面的软机器人功能将在舒适性、健康、医疗保健和能源方面对人类生活产生重大影响。在这篇综述中,我们展示了液晶网络和弹性体在软机器人技术中的探索可能性和多功能性,重点介绍了运动表面特性,如地形动力学。通常情况下,这些表面在各种刺激下可从平坦状态可逆地转变为预先设计的波纹状态。但也可以在不同的波纹状态之间进行可逆转换。一般来说,驱动触发器是热、光、电或与 pH 值变化介质接触。此外,还说明了这些动态地形的宏观效应,例如改变摩擦、润湿性和/或做功。综述最后讨论了现有挑战以及展望机会。