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Physicochemical Characterization, and Relaxometry Studies of Micro-Graphite Oxide, Graphene Nanoplatelets, and Nanoribbons

Overview of attention for article published in PLOS ONE, June 2012
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Title
Physicochemical Characterization, and Relaxometry Studies of Micro-Graphite Oxide, Graphene Nanoplatelets, and Nanoribbons
Published in
PLOS ONE, June 2012
DOI 10.1371/journal.pone.0038185
Pubmed ID
Authors

Bhavna S. Paratala, Barry D. Jacobson, Shruti Kanakia, Leonard Deepak Francis, Balaji Sitharaman

Abstract

The chemistry of high-performance magnetic resonance imaging contrast agents remains an active area of research. In this work, we demonstrate that the potassium permanganate-based oxidative chemical procedures used to synthesize graphite oxide or graphene nanoparticles leads to the confinement (intercalation) of trace amounts of Mn(2+) ions between the graphene sheets, and that these manganese intercalated graphitic and graphene structures show disparate structural, chemical and magnetic properties, and high relaxivity (up to 2 order) and distinctly different nuclear magnetic resonance dispersion profiles compared to paramagnetic chelate compounds. The results taken together with other published reports on confinement of paramagnetic metal ions within single-walled carbon nanotubes (a rolled up graphene sheet) show that confinement (encapsulation or intercalation) of paramagnetic metal ions within graphene sheets, and not the size, shape or architecture of the graphitic carbon particles is the key determinant for increasing relaxivity, and thus, identifies nano confinement of paramagnetic ions as novel general strategy to develop paramagnetic metal-ion graphitic-carbon complexes as high relaxivity MRI contrast agents.

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Mendeley readers

The data shown below were compiled from readership statistics for 69 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
France 1 1%
Norway 1 1%
Italy 1 1%
India 1 1%
Egypt 1 1%
Denmark 1 1%
Japan 1 1%
Unknown 62 90%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 21 30%
Researcher 12 17%
Student > Master 6 9%
Student > Bachelor 4 6%
Student > Doctoral Student 4 6%
Other 12 17%
Unknown 10 14%
Readers by discipline Count As %
Chemistry 20 29%
Engineering 10 14%
Agricultural and Biological Sciences 7 10%
Materials Science 6 9%
Physics and Astronomy 5 7%
Other 10 14%
Unknown 11 16%