Xu Jie, Mahajan Kalpesh, Xue Wei, Winter Jessica O, Zborowski Maciej, Chalmers Jeffrey J
William G Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, 140 W. 19th Avenue, Columbus, OH 43210.
J Magn Magn Mater. 2012 Dec 1;324(24):4189-4199. doi: 10.1016/j.jmmm.2012.07.039.
Single particle magnetization and size measurements of micron and nano sized, magnetic particles were made using a previously described device referred to as Cell Tracking Velocimetry, CTV. Three types of commercially available, and commonly used, magnetic particles were studied in this report. While the CTV instrument provides individual particles measurements, the average magnetization and size measurements were found to have reasonable agreements with reported values from instruments which measure bulk values. In addition, the CTV instrument, using electromagnets, can also determine magnetization curves, which also proved to have reasonable agreement with other published studies. Given that magnetic separation and analysis technology is dependent on the quality of the magnetic particles used, studies such as this one using CTV provide not only average data, but also provides information with respect to the distribution of the properties such as magnetization and size. For example, the spread of the data in magnetic and settling velocities were found to be predominately due to the size distribution of the analyzed particles.
使用一种先前描述的称为细胞追踪测速仪(CTV)的设备,对微米和纳米尺寸的磁性颗粒进行了单颗粒磁化和尺寸测量。本报告研究了三种市售且常用的磁性颗粒。虽然CTV仪器提供单个颗粒的测量值,但发现平均磁化强度和尺寸测量值与测量总体值的仪器所报告的值具有合理的一致性。此外,使用电磁铁的CTV仪器还可以确定磁化曲线,这也被证明与其他已发表的研究具有合理的一致性。鉴于磁分离和分析技术依赖于所使用磁性颗粒的质量,像这样使用CTV的研究不仅提供平均数据,还提供有关诸如磁化强度和尺寸等性质分布的信息。例如,发现磁性和沉降速度数据的分散主要归因于所分析颗粒的尺寸分布。