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Updated: Sep 24, 2025

Synthesis of Cationized Magnetoferritin for Ultra-fast Magnetization of Cells
Published on: December 13, 2016
Cobalt ferrite supported on reduced graphene oxide as a T 2 contrast agent for magnetic resonance imaging
Amira Alazmi1,2, Venkatesh Singaravelu3, Nitin M Batra1
1King Abdullah University of Science and Technology (KAUST), Physical Science and Engineering Division Thuwal 23955-6900 Saudi Arabia amirh.aalazmy@kaust.edu.sa pedro.dacosta@kaust.edu.sa.
Abstract:
Nanoscaled spinel-structured ferrites bear promise as next-generation contrast agents for magnetic resonance imaging. However, the small size of the particles commonly leads to colloidal instability under physiological conditions. To circumvent this problem, supports onto which the dispersed nanoparticles can be anchored have been proposed. Amongst these, flakes of graphene have shown interesting performance but it remains unknown if and how their surface texture and chemistry affect the magnetic properties and relaxation time (T 2) of the ferrite nanoparticles. Here, it is shown that the type of graphene oxide (GO) precursor, used to make composites of cobalt ferrite (CoFe2O4) and reduced GO, influences greatly not just the T 2 but also the average size, dispersion and magnetic behaviour of the grafted nanoparticles. Accordingly, and without compromising biocompatibility, a judicious choice of the initial GO precursor can result in the doubling of the proton relaxivity rate in this system.
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