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Physical Chemistry Chemical Physics : PCCP|October 10, 2006
Detection of hydrogen bonding in solution: a 2H nuclear magnetic resonance method based on rotational motion of a donor/acceptor complexNathaniel K Szymczak, Alan B Oelkers, David R Tyler
Dalton Transactions (Cambridge, England : 2003)|June 3, 2009
Intermediates in the reduction of N(2) to NH(3): synthesis of iron eta(2) hydrazido(1-) and diazene complexesJustin L Crossland, Chantal G Balesdent, David R Tyler
Inorganic Chemistry|October 25, 2011
Coordination of a complete series of N2 reduction intermediates (N2H2, N2H4, and NH3) to an iron phosphine scaffoldJustin L Crossland, Chantal G Balesdent, David R Tyler
Journal of the American Chemical Society|September 22, 2017
Radical Cage Effects: The Prediction of Radical Cage Pair Recombination Efficiencies Using Microviscosity Across a Range of Solvent TypesJustin T Barry, Daniel J Berg, David R Tyler
Photochemical & Photobiological Sciences : Official Journal of the European Photochemistry Association and the European Society for Photobiology|February 12, 2008
Solvent cage effects: the influence of radical mass and volume on the recombination dynamics of radical cage pairs generated by photolysis of [CpCH2CH2N(CH3)C(O)(CH2)nCH3Mo(CO)3]2 (n = 3, 8, 13, 18) (Cp = eta 5-C5H4) complexesAlan B Oelkers, Erick J Schutte, David R Tyler
Inorganic Chemistry|May 25, 2004
H2 activation in aqueous solution: formation of trans-[Fe(DMeOPrPE)2H(H2)]+ via the heterolysis of H2 in waterJohn D Gilbertson, Nathaniel K Szymczak, David R Tyler
Journal of the American Chemical Society|July 20, 2016
Radical Cage Effects: Comparison of Solvent Bulk Viscosity and Microviscosity in Predicting the Recombination Efficiencies of Radical Cage PairsJustin T Barry, Daniel J Berg, David R Tyler
Inorganic Chemistry|May 13, 2003
Rh(II) and Rh(I) two-legged piano-stool complexes: structure, reactivity, and electronic propertiesFelicia M Dixon, Martin S Masar, Peter E Doan, et al.
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