4.8 Article

Tilted Magnetic Levitation Enables Measurement of the Complete Range of Densities of Materials with Low Magnetic Permeability

Journal

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
Volume 138, Issue 4, Pages 1252-1257

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jacs.5b10936

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Funding

  1. Department of Energy, Division of Materials Science and Engineering [ER-45852]
  2. Singapore Government

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Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagnetic solution in a magnetic field gradient provides a simple method to measure the density of small samples of solids or liquids. One major limitation of this method, thus far, has been an inability to measure or manipulate materials outside of a narrow range of densities (0.8 g/cm(3) < rho < 2.3 g/cm(3)) that are close in density to the suspending, aqueous medium. This paper explores a simple method-tilted MagLev-to increase the range of densities that can be levitated magnetically. Tilting the MagLev device relative to the gravitational vector enables the magnetic force to be decreased (relative to the magnetic force) along the axis of-measurement. This approach enables many practical measurements over the entire range observed in matter ambient conditions-from air bubbles (p approximate to 0) to osmium and iridium (p approximate to 23 g/cm(3)). The ability to levitate, simultaneously, objects with a broad range of different densities provides an operationally simple method that may find application to forensic science (e.g., for identifying the composition of miscellaneous objects or powders), industrial manufacturing (e.g., for quality control of parts), or resource-limited settings (e.g., for identifying and separating small particles of metals and alloys).

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