Medhat A. Shaibat, Ph.D.

Affiliations: 
2009 University of Illinois at Chicago, Chicago, IL, United States 
Area:
Analytical Chemistry
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"Medhat Shaibat"
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Yoshitaka Ishii grad student 2009 University of Illinois, Chicago
 (Solid-state nuclear magnetic resonance of paramagnetic systems, graphite materials and amyloid peptide.)
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Publications

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Casabianca LB, Shaibat MA, Cai WW, et al. (2010) NMR-based structural modeling of graphite oxide using multidimensional 13C solid-state NMR and ab initio chemical shift calculations. Journal of the American Chemical Society. 132: 5672-6
Shaibat MA, Casabianca LB, Siberio-Pérez DY, et al. (2010) Distinguishing polymorphs of the semiconducting pigment copper phthalocyanine by solid-state NMR and Raman spectroscopy. The Journal of Physical Chemistry. B. 114: 4400-6
Cai W, Piner RD, Stadermann FJ, et al. (2008) Synthesis and solid-state NMR structural characterization of 13C-labeled graphite oxide. Science (New York, N.Y.). 321: 1815-7
Wickramasinghe NP, Shaibat MA, Jones CR, et al. (2008) Progress in 13C and 1H solid-state nuclear magnetic resonance for paramagnetic systems under very fast magic angle spinning. The Journal of Chemical Physics. 128: 052210
Chimon S, Shaibat MA, Jones CR, et al. (2007) Evidence of fibril-like β-sheet structures in a neurotoxic amyloid intermediate of Alzheimer's β-amyloid. Nature Structural & Molecular Biology. 14: 1157-64
Shaibat MA, Casabianca LB, Wickramasinghe NP, et al. (2007) Characterization of polymorphs and solid-state reactions for paramagnetic systems by 13C solid-state NMR and ab initio calculations. Journal of the American Chemical Society. 129: 10968-9
Wickramasinghe NP, Shaibat MA, Ishii Y. (2007) Elucidating connectivity and metal-binding structures of unlabeled paramagnetic complexes by 13C and 1H solid-state NMR under fast magic angle spinning. The Journal of Physical Chemistry. B. 111: 9693-6
Wickramasinghe NP, Shaibat M, Ishii Y. (2005) Enhanced sensitivity and resolution in (1)H solid-state NMR spectroscopy of paramagnetic complexes under very fast magic angle spinning. Journal of the American Chemical Society. 127: 5796-7
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