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埋入熔融石英中的用于光子学应用的半透明3D微电极。

Semi-transparent 3D microelectrodes buried in fused silica for photonics applications.

作者信息

Guduru S S K, Bucella S G, Bonfadini S, Vishnubhatla K C, Caironi M, Criante L

出版信息

Opt Express. 2021 Aug 16;29(17):27149-27159. doi: 10.1364/OE.433330.

Abstract

We report the realization of semi-transparent 3D microelectrodes fully embedded in a fused silica substrate by a combination of femtosecond laser microfabrication and inkjet printing. We also demonstrate the application of such electrodes in a proof-of-concept lab-on-chip device configuration, which acts as a liquid crystal molecular polarization rotator using on-chip electric fields. This work constitutes a first of its kind synergy between two widely used microfabrication techniques, femtosecond laser and inkjet, demonstrating a very efficient integration of optical, electrical and microfluidic components in a unique platform and thus enabling fast prototyping of 3D structured electro-optic lab-on-chips.

摘要

我们报告了通过飞秒激光微加工和喷墨打印相结合的方法,成功实现了完全嵌入熔融石英基板中的半透明3D微电极。我们还展示了这种电极在概念验证芯片实验室设备配置中的应用,该配置利用片上电场作为液晶分子偏振旋转器。这项工作首次在两种广泛使用的微加工技术(飞秒激光和喷墨)之间实现了协同效应,展示了在一个独特平台中光学、电气和微流体组件的非常高效的集成,从而实现了3D结构化电光芯片实验室的快速原型制作。

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