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Two-phase microfluidics in electrowetting displays and its effect on opticalperformance

机译:电润湿显示器中的两相微流体及其对光学的影响性能

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摘要

Driving microfluidic flow in micropixels by electrowetting to realize light switches and displays is of both practical and fundamental significance. The electro-optical performance related to microfluidic behavior needs to be clarified to optimize device functions. In this article, the microfluidic performance in electrowetting display devices was categorized according to the oil-water interface shape and response. The oil film movement was divided into vertically “thinning” and transversally “opening,” for which the “thinning” process was found the key factor determining the pixel switching speed rather than the “opening” process. Therefore, the breakup point and the oil film thickness were critical, which could be controlled by surface wettability and oil volume. We have also realized a new oil filling method with controllable dosing volume assisted by the microfluidic creation of microdroplets. This study could help quantitatively understand electrowetting display performance in both its theoretical and practical aspects.
机译:通过电润湿驱动微像素中的微流体流动以实现光开关和显示具有实际和根本的意义。需要阐明与微流体行为有关的电光性能,以优化设备功能。在本文中,电润湿显示设备中的微流体性能根据油-水界面的形状和响应进行了分类。油膜运动分为垂直“变薄”和横向“打开”,为此,“变薄”过程是决定像素切换速度的关键因素,而不是“打开”过程。因此,破裂点和油膜厚度至关重要,这可以通过表面润湿性和油量来控制。我们还实现了一种新的注油方法,该方法的剂量可控,并通过微液滴的微流控产生。这项研究可以帮助从理论和实践方面定量地了解电润湿显示性能。

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