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- W1966265581 endingPage "3280" @default.
- W1966265581 startingPage "3280" @default.
- W1966265581 abstract "Despite the large body of literature describing the synthesis of magnetic nanoparticles, few analytical tools are commonly used for their purification and analysis. Due to their unique physical and chemical properties, magnetic nanoparticles are appealing candidates for biomedical applications and analytical separations. Yet in the absence of methods for assessing and assuring their purity, the ultimate use of magnetic particles and heterostructures is likely to be limited. In this review, we summarize the separation techniques that have been initially used for this purpose. For magnetic nanoparticles, it is the use of an applied magnetic flux or field gradient that enables separations. Flow based techniques are combined with applied magnetic fields to give methods such as magnetic field flow fractionation and high gradient magnetic separation. Additional techniques have been explored for manipulating particles in microfluidic channels and in mesoporous membranes. Further development of these and new analytical tools for separation and analysis of colloidal particles is critically important to enable the practical use of these, particularly for medicinal purposes." @default.
- W1966265581 created "2016-06-24" @default.
- W1966265581 creator A5010866132 @default.
- W1966265581 creator A5065545178 @default.
- W1966265581 creator A5077169671 @default.
- W1966265581 date "2012-01-01" @default.
- W1966265581 modified "2023-10-18" @default.
- W1966265581 title "Analytical methods for separating and isolating magnetic nanoparticles" @default.
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