Related Experiment Video
Updated: Apr 16, 2026

Free-form Light Actuators — Fabrication and Control of Actuation in Microscopic Scale
Published on: May 25, 2016
Corona-Driven Electrostatic Self-Assembly of Tunable Liquid Lenses via Local Field Confinement
Chengjun Wang1,2,3, Biao Cheng2, Manfei Liu2
1State Key Laboratory of Digital Intelligent Technology for Unmanned Coal Mining, Anhui University of Science and Technology, Huainan, Anhui 232001, China.
Abstract:
The development of adaptive liquid lenses is often constrained by intricate electrode structures and limited actuation robustness. We propose a contactless electrostatic shaping strategy based on corona discharge and local electric field confinement. In this design, surface charges deposited on a PDMS droplet interact with a strongly nonuniform field from a microstructured channel, guiding the liquid to form a smooth, curvature-tunable lens. Experimental results show that the lens profile (contact angle and height) is voltage-tunable, achieving a maximum contact angle of 155.3°. The formation mechanism, primarily attributed to electrohydrodynamic circulation and localized field enhancement, contributes to high stability and reversibility. Furthermore, the lens can be asymmetrically deformed for real-time focal tracking, and its optical focal length is continuously adjustable. This work provides a robust and scalable strategy for the development of next-generation adaptive micro-optical systems.

