Wang Yuzhe, Li Pengcheng, Gupta Ujjaval, Ouyang Jianyong, Zhu Jian
Department of Mechanical Engineering, and National University of Singapore, Singapore, Singapore.
Department of Materials Science and Engineering, National University of Singapore, Singapore, Singapore.
Soft Robot. 2022 Aug;9(4):705-712. doi: 10.1089/soro.2021.0036. Epub 2021 Aug 12.
Tunable lens technology inspired by the human eye has opened a new paradigm of smart optical devices for a variety of applications due to unique characteristics such as lightweight, low cost, and facile fabrication over conventional lens assemblies. The fast-growing demands for tunable optical lenses in consumer electronics, medical diagnostics, and optical communications require the lens to have a large focal length modulation range and high compactness. Herein, for the first time, an all-solid tunable soft lens driven by highly transparent dielectric elastomer actuators (DEAs) based on poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) and waterborne polyurethane (PEDOT:PSS/WPU) transparent electrodes is developed. The deformation of the tunable soft lens is achieved by the actuation of DEAs, mimicking the change of the surface profile of the human eye to achieve remarkable focal length variations. Upon electrical activation, this tunable soft lens can vary its original focal length by 209%, which is one of the highest among current tunable soft lenses and far beyond that of the human eye. This study demonstrates that transparent DEAs are capable of achieving focus-variation functions, and potentially useful in artificial robotic vision, visual prostheses, and adjustable glasses, which will induce significant effects on the future development of tunable optics.
受人类眼睛启发的可调谐透镜技术,因其具有诸如重量轻、成本低以及相较于传统透镜组件易于制造等独特特性,为各种应用开启了智能光学器件的新范式。消费电子、医学诊断和光通信领域对可调谐光学透镜的需求快速增长,这要求透镜具有大的焦距调制范围和高紧凑性。在此,首次开发了一种由基于聚(3,4 - 乙撑二氧噻吩):聚(苯乙烯磺酸盐)和水性聚氨酯(PEDOT:PSS/WPU)透明电极的高透明介电弹性体致动器(DEA)驱动的全固态可调谐软透镜。可调谐软透镜的变形通过DEA的驱动实现,模仿人眼表面轮廓的变化以实现显著的焦距变化。在电激活时,这种可调谐软透镜可使其原始焦距变化209%,这是当前可调谐软透镜中最高的之一,远远超过人眼的变化。这项研究表明,透明DEA能够实现焦点变化功能,并且在人工机器人视觉、视觉假体和可调节眼镜方面具有潜在用途,这将对可调谐光学的未来发展产生重大影响。