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Multifunctional magnetic rotator for micro and nanorheological studies

机译:用于微流变学和纳米流变学研究的多功能磁转子

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摘要

We report on the development of a multifunctional magnetic rotator that has been built and used during the last five years by two groups from Clemson and Drexel Universities studying the rheological properties of microdroplets. This magnetic rotator allows one to generate rotating magnetic fields in a broad frequency band, from hertz to tens kilohertz. We illustrate its flexibility and robustness by conducting the rheological studies of simple and polymeric fluids at the nano and microscale. First we reproduce a temperature-dependent viscosity of a synthetic oil used as a viscosity standard. Magnetic rotational spectroscopy with suspended nickel nanorods was used in these studies. As a second example, we converted the magnetic rotator into a pump with precise controlled flow modulation. Using multiwalled carbon nanotubes, we were able to estimate the shear modulus of sickle hemoglobin polymer. We believe that this multifunctional magnetic system will be useful not only for micro and nanorheological studies, but it will find much broader applications requiring remote controlled manipulation of micro and nanoobjects.
机译:我们报告了由克莱姆森大学和德雷克塞尔大学的两个小组在过去五年中研究和研究微滴流变特性的多功能磁转子的发展情况。这种磁旋转器允许人们在从赫兹到几十千赫兹的宽频带内产生旋转磁场。我们通过在纳米和微米尺度上对简单和聚合物流体进行流变学研究来说明其灵活性和耐用性。首先,我们再现了用作粘度标准的合成油的温度依赖性粘度。在这些研究中使用了悬浮镍纳米棒的磁旋转光谱法。作为第二个示例,我们将电磁转子转换为具有精确控制流量调制的泵。使用多壁碳纳米管,我们能够估计镰刀血红蛋白聚合物的剪切模量。我们相信,这种多功能的磁性系统不仅将对微观和纳米流变学研究有用,而且将发现更广泛的应用,需要对微观和纳米物体进行远程控制。

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