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Tweezing of Magnetic and Non-Magnetic Objects with Magnetic Fields

机译:用磁场钳制磁性和非磁性物体

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摘要

Although strong magnetic fields cannot be conveniently "focused" like light, modern microfabrication techniques enable preparation of microstructures with which the field gradients - and resulting magnetic forces - can be localized to very small dimensions. This ability provides the foundation for magnetic tweezers which in their classical variant can address magnetic targets. More recently, the so-called negative magnetophoretic tweezers have also been developed which enable trapping and manipulations of completely nonmagnetic particles provided that they are suspended in a high-magnetic-susceptibility liquid. These two modes of magnetic tweezing are complimentary techniques tailorable for different types of applications. This Progress Report provides the theoretical basis for both modalities and illustrates their specific uses ranging from the manipulation of colloids in 2D and 3D, to trapping of living cells, control of cell function, experiments with single molecules, and more.
机译:尽管不能像光那样方便地将强磁场“聚焦”,但是现代微细加工技术可以制备微结构,利用这种微结构,磁场梯度以及所产生的磁力可以定位在非常小的尺寸上。这种能力为磁性镊子奠定了基础,而传统的电磁镊子可以解决磁性目标。最近,还开发了所谓的负磁致动镊子,只要它们悬浮在高磁化率液体中,它们就可以捕获和操纵完全非磁性的颗粒。这两种磁性钳夹模式是可针对不同类型的应用量身定制的互补技术。该进展报告为这两种方法提供了理论基础,并说明了它们的特定用途,从在2D和3D中操纵胶体到捕获活细胞,控制细胞功能,进行单分子实验等等。

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  • 来源
    《Advanced Materials》 |2017年第18期|1603516.1-1603516.17|共17页
  • 作者单位

    Aalto Univ, Sch Sci, Dept Appl Phys, Espoo 02150, Finland;

    Ulsan Natl Inst Sci & Technol, Ctr Soft & Living Matter, Ulsan 44919, South Korea|Ulsan Natl Inst Sci & Technol, Dept Chem, Ulsan 44919, South Korea;

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