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Inorganic Chemistry|March 21, 2013
Structure and nature of manganese(II) imidazole complexes in frozen aqueous solutionsSun UnMagnetic Resonance in Chemistry : MRC|October 20, 2005
The g-values and hyperfine coupling of amino acid radicals in proteins: comparison of experimental measurements with ab initio calculationsSun UnInorganic Chemistry|October 22, 2015
How Bonding in Manganous Phosphates Affects their Mn(II)-(31)P Hyperfine InteractionsSun Un, Eduardo M BruchThe Journal of Biological Chemistry|January 11, 2013
In situ determination of manganese(II) speciation in Deinococcus radiodurans by high magnetic field EPR: detection of high levels of Mn(II) bound to proteinsLeandro C Tabares, Sun UnBiochemistry|February 28, 2007
Characterization of the tyrosine-Z radical and its environment in the spin-coupled S2TyrZ* state of photosystem II from Thermosynechococcus elongatusSun Un, Alain Boussac, Miwa SugiuraEnvironmental Science & Technology|August 19, 2010
Effect of metal ions on the indigenous radicals of humic acids: high field electron paramagnetic resonance studyKonstantinos C Christoforidis, Sun Un, Yiannis DeligiannakisThe Journal of Physical Chemistry. A|October 24, 2007
High-field 285 GHz electron paramagnetic resonance study of indigenous radicals of humic acidsKonstantinos C Christoforidis, Sun Un, Yiannis DeligiannakisBiochimica Et Biophysica Acta|October 13, 2009
Understanding the influence of the protein environment on the Mn(II) centers in Superoxide Dismutases using High-Field Electron Paramagnetic ResonanceLeandro C Tabares, Jessica Gätjens, Sun UnBiochimica Et Biophysica Acta|February 13, 2007
Manganese binding to the 23 kDa extrinsic protein of Photosystem IINatallia Bondarava, Sun Un, Anja Krieger-LiszkayBiochemistry|July 20, 2007
Role of tyrosine-34 in the anion binding equilibria in manganese(II) superoxide dismutasesLeandro C Tabares, Néstor Cortez, Sun UnPageof 5