微透镜
焦距
材料科学
焦点
小型化
光学
透明度(行为)
电压
基点
泄漏(经济)
光电子学
计算机科学
镜头(地质)
纳米技术
电气工程
工程类
宏观经济学
经济
物理
计算机安全
作者
Jae Uk Yoon,Dong‐Heon Han,Seung‐Ju Oh,Insun Woo,Hyeon‐Su Park,Jin Woo Bae
标识
DOI:10.1002/admt.202201988
摘要
Abstract Electrically reconfigurable lenses capable of focal adjustment and zooming require deformable adaptive optical components. However, existing electroactive optical devices that perform these functions are limited by fluid leakage or require complex mechanical parts. Although polyvinyl chloride (PVC) gel‐based lenses with variable focal lengths and zooming have recently been developed, focal adjustment can only be made in the horizontal axis. Herein, a PVC gel‐based adaptive microlens capable of controlling the focal length and focal point simultaneously in the vertical, horizontal, and diagonal directions without mechanical gears or liquid leakage is presented. By optimizing the characteristics of PVC gels plasticized with three different structured plasticizers, a PVC gel‐based adaptive microlens is fabricated. The produced microlens demonstrates the properties of multidirectional focal adjustment, variable focal length (+33.7 to −15.1 mm) at low input voltages (<300 V), excellent transparency (>90%), fast response (0.10 s at 100 V), silent operation, low power consumption (0.39 mW), and excellent potential for further miniaturization.
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