1 |
Inhibition of [FeFe]-Hydrogenases by Formaldehyde and Wider Mechanistic Implications for Biohydrogen Activation Foster CE, Kramer T, Wait AF, Parkin A, Jennings DP, Happe T, McGrady JE, Armstrong FA Journal of the American Chemical Society, 134(17), 7553, 2012 |
2 |
Sensitization of Europium(III) luminescence by benzophenone-containing ligands: Regioisomers, rearrangements and chelate ring size, and their influence on quantum yields Wilkinson AJ, Maffeo D, Beeby A, Foster CE, Williams JAG Inorganic Chemistry, 46(22), 9438, 2007 |
3 |
Luminescent complexes of iridium(III) containing N boolean AND C boolean AND N-coordinating terdentate ligands Wilkinson AJ, Puschmann H, Howard JAK, Foster CE, Williams JAG Inorganic Chemistry, 45(21), 8685, 2006 |
4 |
Synthesis and luminescence of a charge-neutral, cyclometalated iridium(III) complex containing N boolean AND C boolean AND N- and C boolean AND N boolean AND C-coordinating terdentate ligands Wilkinson AJ, Goeta AE, Foster CE, Williams JAG Inorganic Chemistry, 43(21), 6513, 2004 |
5 |
Resonance Raman intensity analysis of chlorine dioxide dissolved in chloroform: The role of nonpolar solvation Foster CE, Barham BP, Reid PJ Journal of Chemical Physics, 114(19), 8492, 2001 |
6 |
Excited-state reaction dynamics of chlorine dioxide in water from absolute resonance Raman intensities Foster CE, Reid PJ Journal of Physical Chemistry A, 102(20), 3514, 1998 |
7 |
Evidence for the B-2(1)-(2)A(1) electronic transition in chlorine dioxide from resonance Raman depolarization ratios Reid PJ, Esposito AP, Foster CE, Beckman RA Journal of Chemical Physics, 107(20), 8262, 1997 |
8 |
Excited-State Dynamics of Chlorine Dioxide in the Condensed-Phase from Resonance Raman Intensities Esposito AP, Foster CE, Beckman RA, Reid PJ Journal of Physical Chemistry A, 101(29), 5309, 1997 |