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微纳材料的介电泳操纵综述:基础、最新进展与挑战

Review of Dielectrophoretic Manipulation of Micro and Nanomaterials: Fundamentals, Recent Developments, and Challenges.

作者信息

Ghomian Taher, Hihath Joshua

出版信息

IEEE Trans Biomed Eng. 2023 Jan;70(1):27-41. doi: 10.1109/TBME.2022.3183167. Epub 2022 Dec 26.

Abstract

This paper reviews the state-of-the-art methods of dielectrophoresis for micro- and nanomaterial manipulation. Dielectrophoresis is a well-known technique for material manipulation using a nonuniform electric field. This field can apply a force to dielectric materials and move them toward a predefined location. Controlling the pattern of the electric field and its intensity, achieved by a specific arrangement of electrodes or insulators, along with the dielectric properties of the materials allows a variety of manipulation functions including trapping, separation, and transportation. The development of microfabrication techniques has significantly improved the research quality in the field of dielectrophoresis for precisely manipulating micro and nanomaterials. Later, the advent of microfluidic devices provided an excellent platform for reliable and practical devices. Modifying the shape, geometry, and material of the electrodes, isolating the electrodes from the sample, incorporating a particular arrangement of insulators within the electric field, and monitoring the operation in situ are some of the methods utilized for overcoming common problems in dielectrophoretic devices or the problems associated with a specific sample and the manipulation function. The goal of the research in this field is to design practical, high throughput, and inexpensive devices that reliably manipulate micro and nanomaterials. Accordingly, this review aims to represent latest findings and advancements in the field of dielectrophoresis. In particular, the working principles, technical implementation details, current status, and the issues and challenges of dielectrophoretic devices for electrode-based and insulator-based dielectrophoresis in terms of operation and fabrication are discussed.

摘要

本文综述了用于微纳材料操控的介电泳最新方法。介电泳是一种利用非均匀电场进行材料操控的知名技术。该电场可对介电材料施加力并将其移动到预定位置。通过电极或绝缘体的特定排列实现对电场模式及其强度的控制,再结合材料的介电特性,可实现包括捕获、分离和运输在内的多种操控功能。微加工技术的发展显著提高了介电泳领域精确操控微纳材料的研究质量。后来,微流控装置的出现为可靠且实用的设备提供了一个绝佳平台。改变电极的形状、几何结构和材料,将电极与样品隔离,在电场中加入特定排列的绝缘体,以及原位监测操作等,都是用于克服介电泳装置中常见问题或与特定样品及操控功能相关问题的一些方法。该领域研究的目标是设计出能够可靠操控微纳材料的实用、高通量且廉价的设备。因此,本综述旨在介绍介电泳领域的最新研究成果和进展。特别是,从操作和制造方面讨论了基于电极的介电泳和基于绝缘体的介电泳的介电泳装置的工作原理、技术实施细节、现状以及问题和挑战。

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