Paramagnetic ionic liquids (PILs) provide new capabilities to measurements of density using magnetic levitation (MagLev). In a typical measurement, a diamagnetic object of unknown density is placed in a container containing a PIL. The container is placed between two magnets (typically NdFeB, oriented with like poles facing). The density of the diamagnetic object can be determined by measuring its position in the magnetic field along the vertical axis (levitation height, h), either as an absolute value, or relative to internal standards of known density. For density measurements by MagLev, PILs have three advantages over solutions of paramagnetic salts in aqueous or organic solutions: (i) negligible vapor pressures; (ii) low melting points; ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Paramagnetic ionic liquids (PILs) provide new capabilities to measurements of density using magnetic...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
This work describes the development of an integrated analytical system that enables high-throughput ...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
Combining aqueous multiphase systems (AMPS) and magnetic levitation (MagLev) provides a method to pr...
Combining aqueous multiphase systems (AMPS) and magnetic levitation (MagLev) provides a method to pr...
In the last decades, a myriad of materials has been synthesized and utilized for the development of ...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
This paper describes the use of magnetic levitation (MagLev) to measure the association of proteins ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Paramagnetic ionic liquids (PILs) provide new capabilities to measurements of density using magnetic...
Magnetic levitation (MagLev) of diamagnetic or weakly paramagnetic materials suspended in a paramagn...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
This work describes the development of an integrated analytical system that enables high-throughput ...
This paper presents methods that use Magnetic Levitation (MagLev) to measure very small differences ...
Combining aqueous multiphase systems (AMPS) and magnetic levitation (MagLev) provides a method to pr...
Combining aqueous multiphase systems (AMPS) and magnetic levitation (MagLev) provides a method to pr...
In the last decades, a myriad of materials has been synthesized and utilized for the development of ...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
Magnetic ionic liquids (MILs) are a subclass of ionic liquids (ILs) containing paramagnetic componen...
This paper describes the use of magnetic levitation (MagLev) to measure the association of proteins ...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...
Hirota et al. [6] found that the magneto-Archimedes force could be used to levitate biological mater...