Nanos Sci.

Nanos Sci.

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Nanos Sci. develops and produces superparamagnetic iNANOvative™ nanoparticle clusters

develops and produces superparamagnetic iNANOvative™ nanoparticle clusters composed of a number of single SuperParamagnetic Iron Oxide Nanoparticles (sSPIONs™). Compared to individual superparamagnetic nanocrystal (sSPION), the nanoparticle clusters (size 70-150 nm) display much larger magnetic moments needed in applications involving manipulation with magnetic field. The focus of our product deve

Magnetic Assembly of Superparamagnetic Iron Oxide Nanoparticle Clusters into Nanochains and... 04/10/2015

Assembly of our magnetic nanochains and nanobundles was published in ACS Nano.

Magnetic Assembly of Superparamagnetic Iron Oxide Nanoparticle Clusters into Nanochains and... We report on the syntheses of magnetoresponsive, superparamagnetic nanostructures with highly anisotropic shapes, i.e., nanochains of controlled length and their bundles (nanobundles). These nanochains and nanobundles were obtained by the simultaneous magnetic assembly of superparamagnetic nanoparti…

Photos 11/04/2014

iNANOvative™ nanoparticle clusters are ideal for magnetic separations: easy to use – quick separation – no agglomeration

Photos from Nanos Sci.'s post 13/03/2014

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iNANOvative packaging 11/03/2014

that's how iNANOvative nanoparticle clusters are supplied to our customers

iNANOvative photonic effects 07/02/2014
Photos 01/01/2014

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