Faculty of Physics, Warsaw University of Technology, Koszykowa 75, 00-662 Warsaw, Poland.
Centre for Advanced Materials and Technologies (CEZAMAT), Warsaw University of Technology, Poleczki 19, 02-822 Warsaw, Poland.
Sensors (Basel). 2022 May 26;22(11):4037. doi: 10.3390/s22114037.
This work presents research on unique optofluidic systems in the form of air channels fabricated in PDMS and infiltrated with liquid crystalline material. The proposed LC:PDMS structures represent an innovative solution due to the use of microchannel electrodes filled with a liquid metal alloy. The latter allows for the easy and dynamic reconfiguration of the system and eliminates technological issues experienced by other research groups. The paper discusses the design, fabrication, and testing methods for tunable LC:PDMS structures. Particular emphasis was placed on determining their properties after applying an external electric field, depending on the geometrical parameters of the system. The conclusions of the performed investigations may contribute to the definition of guidelines for both LC:PDMS devices and a new class of potential sensing elements utilizing polymers and liquid crystals in their structures.
本工作研究了 PDMS 中制造的空气通道形式的独特光流控系统,并将液晶材料渗透其中。所提出的 LC:PDMS 结构是一种创新的解决方案,因为使用了填充有液态金属合金的微通道电极。后者允许系统的轻松和动态重新配置,并消除了其他研究小组遇到的技术问题。本文讨论了可调谐 LC:PDMS 结构的设计、制造和测试方法。特别强调了在施加外部电场后根据系统的几何参数确定其性能。所进行的研究的结论可能有助于为 LC:PDMS 器件以及利用其结构中的聚合物和液晶的新型潜在传感元件定义指南。