Jonas I. Oxgaard

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2002 Chemistry University of Notre Dame, Notre Dame, IN, United States 
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"Jonas Oxgaard"
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Olaf G. Wiest grad student 2002 Notre Dame
 (Substituent effects, spin /charge localization and accelerated rearrangements: Theoretical investigations of hydrocarbon radical cations.)
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Publications

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Keith JA, Behenna DC, Sherden N, et al. (2012) The reaction mechanism of the enantioselective Tsuji allylation: inner-sphere and outer-sphere pathways, internal rearrangements, and asymmetric C-C bond formation. Journal of the American Chemical Society. 134: 19050-60
Jacobsson M, Oxgaard J, Abrahamsson CO, et al. (2008) Acid-catalyzed nucleophilic aromatic substitution: experimental and theoretical exploration of a multistep mechanism. Chemistry (Weinheim An Der Bergstrasse, Germany). 14: 3954-60
Gonzales JM, Distasio R, Periana RA, et al. (2007) Methylrhenium trioxide revisited: mechanisms for nonredox oxygen insertion in an M-CH3 bond. Journal of the American Chemical Society. 129: 15794-804
Keith JA, Nielsen RJ, Oxgaard J, et al. (2007) Unraveling the Wacker oxidation mechanisms. Journal of the American Chemical Society. 129: 12342-3
Keith JA, Behenna DC, Mohr JT, et al. (2007) The inner-sphere process in the enantioselective Tsuji allylation reaction with (S)-t-Bu-phosphinooxazoline ligands. Journal of the American Chemical Society. 129: 11876-7
Keith JM, Muller RP, Kemp RA, et al. (2006) Mechanism of direct molecular oxygen insertion in a palladium(II)-hydride bond. Inorganic Chemistry. 45: 9631-3
Bhalla G, Oxgaard J, Goddard WA, et al. (2005) Hydrovinylation of olefins catalyzed by an iridium complex via CH activation Organometallics. 24: 5499-5502
Oxgaard J, Muller RP, Goddard WA, et al. (2004) Mechanism of homogeneous Ir(III) catalyzed regioselective arylation of olefins. Journal of the American Chemical Society. 126: 352-63
Wiest O, Oxgaard J, Saettel NJ. (2003) Structure and reactivity of hydrocarbon radical cations Advances in Physical Organic Chemistry. 38: 87-109
Oxgaard J, Wiest O. (2003) Substituent Effects in the Vinylcyclopropane Radical Cation Rearrangement: A Computational Road to a New Synthetic Tool European Journal of Organic Chemistry. 2003: 1454-1462
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