Zhu Gui-Ping, Yao Jia-Feng, Wu Shi-Hua, Zhang Xi-Dong
College of Astronautics, Nanjing University of Aeronautics and Astronautics, Nanjing, P. R. China.
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, P. R. China.
Electrophoresis. 2018 Sep 25. doi: 10.1002/elps.201800297.
A significant growth of research on adaptive liquid lens is achieved over the past decades, and the field is still attracting increasing attentions, focusing on the transition from the current stage to the commercialized stage. The challenges faced are not limited to fabrication, material, small tuning range in focal lengths, additional control systems, limitations in special actuation methods and so on. In addition, the use of external driving parts or systems induce extra problem on bulky appearance, high cost, low reliability etc. Therefore, adaptive liquid lens will be an interesting research focus in both microfluidics and optofluidics science. This review attempts to summarize and focus on the droplet profile deformation under different driving mechanisms in tunable liquid microlens as well as the application in cameras, cell phone and so on. The driving techniques are generally categorized in terms of mechanisms and driving sources.
在过去几十年里,自适应液体透镜的研究取得了显著增长,该领域仍在吸引越来越多的关注,重点是从当前阶段向商业化阶段的过渡。所面临的挑战不仅限于制造、材料、焦距调节范围小、额外的控制系统、特殊驱动方法的局限性等。此外,使用外部驱动部件或系统会引发诸如外观笨重、成本高、可靠性低等额外问题。因此,自适应液体透镜将成为微流体和光流体科学中一个有趣的研究重点。本综述试图总结并聚焦于可调谐液体微透镜在不同驱动机制下的液滴轮廓变形以及在相机、手机等方面的应用。驱动技术通常根据机制和驱动源进行分类。