Curtis Matthew Whaley

The Dow Chemical Company 
Inorganic Chemistry, Organometallic Chemistry, Inorganic Materials, Materials Science
"Curtis Whaley"
Mean distance: 9.88
Cross-listing: UNCW Tree


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Robert Hancock research assistant 1999-2003 UNC Wilmington
Thomas B. Rauchfuss grad student 2003-2010 UIUC
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Galinato MG, Whaley CM, Roberts D, et al. (2011) Favorable Protonation of the (μ-edt)[Fe(2)(PMe(3))(4)(CO)(2)(H-terminal)](+) Hydrogenase Model Complex Over Its Bridging μ-H Counterpart: A Spectroscopic and DFT Study. European Journal of Inorganic Chemistry. 2011: 1147-1154
Galinato MG, Whaley CM, Lehnert N. (2010) Vibrational analysis of the model complex (mu-edt)[Fe(CO)(3)](2) and comparison to iron-only hydrogenase: the activation scale of hydrogenase model systems. Inorganic Chemistry. 49: 3201-15
Salomone-Stagni M, Stellato F, Whaley CM, et al. (2010) The iron-site structure of [Fe]-hydrogenase and model systems: an X-ray absorption near edge spectroscopy study. Dalton Transactions (Cambridge, England : 2003). 39: 3057-64
Chen CH, Liaw WF, Whaley CM, et al. (2010) Iron-cyanocarbonyl complexes [PPN][Fe(CO) 4(CN)] and [PPN][FeBr(CO) 3(CN) 2] Inorganic Syntheses. 35: 129-147
Barton BE, Whaley CM, Rauchfuss TB, et al. (2009) Nickel-iron dithiolato hydrides relevant to the [NiFe]-hydrogenase active site. Journal of the American Chemical Society. 131: 6942-3
Whaley CM, Rauchfuss TB, Wilson SR. (2009) Coordination chemistry of [HFe(CN)(2)(CO)(3)](-) and its derivatives: toward a model for the iron subsite of the [NiFe]-hydrogenases. Inorganic Chemistry. 48: 4462-9
Volkers PI, Boyke CA, Chen J, et al. (2008) Precursors to [FeFe]-hydrogenase models: syntheses of Fe2(SR)2(CO)6 from CO-free iron sources. Inorganic Chemistry. 47: 7002-8
Smith SJ, Whaley CM, Rauchfuss TB, et al. (2006) MS2(Me2PC2H4PMe2)2 (M = Mo, W): acid-base properties, proton transfer, and reversible protonolysis of sulfido ligands. Inorganic Chemistry. 45: 679-87
van der Vlugt JI, Rauchfuss TB, Whaley CM, et al. (2005) Characterization of a diferrous terminal hydride mechanistically relevant to the Fe-only hydrogenases. Journal of the American Chemical Society. 127: 16012-3
Golden ML, Whaley CM, Rampersad MV, et al. (2005) N2S2Ni metallodithiolate complexes as ligands: structural and aqueous solution quantitative studies of the ability of metal ions to form M-S-Ni bridges to mercapto groups coordinated to nickel(II). implications for acetyl coenzyme A synthase. Inorganic Chemistry. 44: 875-83
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