Erik Steene

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1999-2003 Department of Chemistry UiT - The Arctic University of Norway 
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"Erik Steene"
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Thomas KE, Settineri NS, Teat SJ, et al. (2020) Molecular Structure of Copper and μ-Oxodiiron Octafluorocorrole Derivatives: Insights into Ligand Noninnocence. Acs Omega. 5: 10176-10182
Shao J, Steene E, Hoffman BM, et al. (2005) EPR, ENDOR, and DFT studies on (β-octahalo-mesotetraarylporphyrin) copper complexes: Characterization of the metal(dx 2 -y 2)-porphyrin(a2u) orbital interaction European Journal of Inorganic Chemistry. 1609-1615
Steene E, Dey A, Ghosh A. (2003) Beta-octafluorocorroles. Journal of the American Chemical Society. 125: 16300-9
Ghosh A, Steene E. (2002) High-valent transition metal centers versus noninnocent ligands in metallocorroles: insights from electrochemistry and implications for high-valent heme protein intermediates. Journal of Inorganic Biochemistry. 91: 423-36
Steene E, Wondimagegn T, Ghosh A. (2002) Resonance Raman spectroscopy and density functional theoretical calculations of manganese corroles. A parallelism between high-valent metallocorroles and metalloporphyrins, relevant to horseradish peroxidase and chloroperoxidase compound I and II intermediates. Journal of Inorganic Biochemistry. 88: 113-8
Ghosh A, Steene E. (2001) High-valent transition metal centers and noninnocent ligands in metalloporphyrins and related molecules: a broad overview based on quantum chemical calculations. Journal of Biological Inorganic Chemistry : Jbic : a Publication of the Society of Biological Inorganic Chemistry. 6: 739-52
Steene E, Wondimagegn T, Ghosh A. (2001) Electrochemical and Electronic Absorption Spectroscopic Studies of Substituent Effects in Iron(IV) and Manganese(IV) Corroles. Do the Compounds Feature High-Valent Metal Centers or Noninnocent Corrole Ligands? Implications for Peroxidase Compound I and II Intermediates The Journal of Physical Chemistry B. 105: 11406-11413
Ghosh A, Halvorsen I, Nilsen HJ, et al. (2001) Electrochemistry of Nickel and Copperβ-Octahalogeno-meso-tetraarylporphyrins. Evidence for Important Role Played by Saddling-Induced Metal(dx2-y2)−Porphyrin(“a2u”) Orbital Interactions The Journal of Physical Chemistry B. 105: 8120-8124
HALVORSEN I, STEENE E, GHOSH A. (2001) Resonance Raman marker bands of β-octahalogeno-meso-tetraarylmetalloporphyrins Journal of Porphyrins and Phthalocyanines. 5: 721-730
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