电润湿
微流控
材料科学
电极
基质(水族馆)
微尺度化学
纳米技术
灵活性(工程)
数字微流体
光电子学
生物电子学
可重构性
电极阵列
电流(流体)
半导体
硅
实验室晶片
流体学
光刻
电流
连续生产
光学
电位
作者
Enqing Liu,Gaifang Chen,Junyan Tian,Jia Zhou,Frieder Mugele
出处
期刊:Small
[Wiley]
日期:2026-03-16
卷期号:22 (26): e13004-e13004
标识
DOI:10.1002/smll.202513004
摘要
Droplet manipulation plays a crucial role in various applications, for example, microfluidics and water harvesting. Among various driving mechanisms, electrowetting-on-dielectrics (EWOD) is one of the most promising technologies due to its high flexibility and programmability. Until now, discrete electrodes on the substrate have been used to generate an asymmetric electrowetting force by selectively activating electrodes and then activating droplets individually. However, EWOD with fixed electrode geometry by definition limits the reconfigurability and thereby the flexibility of actuating drops along arbitrary paths. Here, we report a continuous droplet-driving method based on gradient electrowetting (GEW) on a photoactive semiconductor surface. The asymmetric electrowetting force drives droplets due to the continuous electric potential gradient in an amorphous silicon (α-Si) layer, which is established when a current is imposed through the chip. The distribution of the electrostatic potential within the photoconductive α-Si film can be manipulated by illuminating the sample with suitable optical patterns using a commercial projector. This leads to a freely programmable driving force without the need for pre-defined electrode patterns. GEW enables continuous droplet driving and merging, demonstrating a simplified approach to droplet manipulation that avoids complex control circuitry. It provides a complementary method to simplify the EWOD system architecture.
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