热释电镊子处理液体单位体积

G. Nasti, S. Coppola, V. Vespini, S. Grilli, A. Vettoliere, C. Granata, P. Ferraro
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引用次数: 10

摘要

液体是发生化学、物理和生物过程的主要环境。考虑到液体桥是液体单位体积(LUV)元件,开发可靠的工具来处理这种体积是非常必要的。本文提出了一种基于热释电-电流体动力学(EHD)的智能微流控平台,用于操纵液体桥,从而以灵活和简单的方式实现多种功能。本文演示了基于铁电晶体热释电效应的EHD引脚矩阵在液体桥中的几种基本操作。通过在预定位置(阵列的引脚)激活pyro - EHD效应,可以同时控制单个或多个luv的运动和处理。特别是,多个操作,如提升,位移,混合,拉伸和载体载体的微粒,显示。这些基于pyro - EHD矩阵的镊子可以为物理智能驱动的多用途平台开辟道路,可用于驱动微尺度和纳米尺度的许多科学和技术领域的运动和操作流形功能,其优点是通过唯一的热刺激激活,远程控制,非接触模式。
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Pyroelectric Tweezers for Handling Liquid Unit Volumes
Liquids are the primary environments in which chemical, physical, and biological processes occur. Considering a liquid bridge as liquid unit volume (LUV) element, it is highly desirable to develop reliable tools for handling such volumes. Herein, a sort of intelligent microfluidic platform based on the pyroelectric‐electrohydrodynamics (EHD) is shown for manipulating liquid bridges and thus performing multiple functions in a flexible and simple way. Several basic operations with liquid bridges using an EHD‐pin matrix based on the pyroelectric effect engineered in ferroelectric crystals are demonstrated. By activating pyro‐EHD effect in predetermined positions (pins of the array), the locomotion and handling of single or multiple LUVs simultaneously are controlled. In particular, multiple operations such as lift, displacement, mixing, stretching, and carrying vector for microparticles, are shown. These tweezers based on a pyro‐EHD matrix can open the route for a multipurpose platform driven by physical intelligence and can be used for driving locomotion and operate manifolds functionalities in many areas of science and technology at microscale as well as nanoscale with advantages to be activated by the sole thermal stimulus, controlled remotely, and in noncontact mode.
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