Russell Pratt, Ph.D.

Affiliations: 
2004 Stanford University, Palo Alto, CA 
Area:
synthetic inorganic and organic chemistry
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"Russell Pratt"
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T. Daniel P. Stack grad student 2004 Stanford
 (Spectroscopy and reactivity of phenolate- and phenoxyl -copper(II) complexes relevant to the enzyme galactose oxidase.)
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Publications

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Pratt RC, Lyons CT, Wasinger EC, et al. (2012) Electrochemical and spectroscopic effects of mixed substituents in bis(phenolate)-copper(II) galactose oxidase model complexes Journal of the American Chemical Society. 134: 7367-7377
Verma P, Pratt RC, Storr T, et al. (2011) Sulfanyl stabilization of copper-bonded phenoxyls in model complexes and galactose oxidase. Proceedings of the National Academy of Sciences of the United States of America. 108: 18600-5
Storr T, Verma P, Pratt RC, et al. (2008) Defining the electronic and geometric structure of one-electron oxidized copper-bis-phenoxide complexes. Journal of the American Chemical Society. 130: 15448-59
Sarangi R, Gorelsky SI, Basumallick L, et al. (2008) Spectroscopic and density functional theory studies of the blue-copper site in M121SeM and C112SeC azurin: Cu-Se versus Cu-S bonding. Journal of the American Chemical Society. 130: 3866-77
Storr T, Wasinger EC, Pratt RC, et al. (2007) The geometric and electronic structure of a one-electron-oxidized nickel(II) bis(salicylidene)diamine complex. Angewandte Chemie (International Ed. in English). 46: 5198-201
Pratt RC, Stack TDP. (2005) Mechanistic insights from reactions between copper(II)-phenoxyl complexes and substrates with activated C-H bonds Inorganic Chemistry. 44: 2367-2375
Pratt RC, Mirica LM, Stack TD. (2004) Snapshots of a metamorphosing Cu(II) ground state in a galactose oxidase-inspired complex. Inorganic Chemistry. 43: 8030-9
Pratt RC, Stack TDP. (2003) Intramolecular charge transfer and biomimetic reaction kinetics in galactose oxidase model complexes Journal of the American Chemical Society. 125: 8716-8717
Gebbink RJ, Watanabe M, Pratt RC, et al. (2003) Oxidatively robust monophenolate-copper(II) complexes as potential models of galactose oxidase. Chemical Communications (Cambridge, England). 630-1
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