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Patterning Highly Conducting Conjugated Polymer Electrodes for Soft and Flexible Microelectrochemical Devices

机译:图案化高导电的共轭聚合物电极,用于软柔性微电色化学装置

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摘要

There is a need for soft actuators in various biomedical applications to manipulate delicate objects such as cells and tissues. Soft actuators are able to adapt to any shape and limit the stress applied to delicate objects. Conjugated polymer (CP) actuators, especially in the so-called trilayer configuration, are interesting candidates for driving such micromanipulators. However, challenges involved in patterning the electrodes in a trilayer with individual contact have prevented further development of soft micromanipulators based on CP actuators. To allow such patterning, two printing-based patterning techniques have been developed. First, an oxidant layer is printed using either syringe-based printing or microcontact printing, followed by vapor-phase polymerization of the CP. Submillimeter patterns with electronic conductivities of 800 S.cm(-1) are obtained. Next, laser ablation is used to cleanly cut the final device structures including the printed patterns, resulting in fingers with individually controllable digits and miniaturized hands. The methods presented in this paper will enable integration of patterned electrically active CP layers in many types of complex three-dimensional structures.
机译:各种生物医学应用中需要软致动器,以操纵细胞和组织的细腻物体。软致动器能够适应任何形状并限制施加到精细物体的应力。共轭聚合物(CP)致动器,特别是在所谓的三层配置中,是用于驱动这种微操纵器的有趣候选者。然而,在具有单独接触的三层器中图案化电极涉及的挑战已经防止了基于CP执行器的软微操纵器进一步开发。为了允许这种图案化,已经开发了两种基于印刷的图案化技术。首先,使用基于注射器的印刷或微接触印刷印刷氧化层,然后通过CP的气相聚合来印刷。获得具有800scm(-1)的电子电导率的亚颌下图案。接下来,使用激光消融来清洁地切割包括印刷图案的最终装置结构,导致具有可单独控制的数字和小型化手的手指。本文呈现的方法将使图案化的电气活性CP层的集成在许多类型的复杂的三维结构中。

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