Richard W. Cruse - Publications

Affiliations: 
1985 Chemistry State University of New York, Albany, Albany, NY, United States 

31 high-probability publications. We are testing a new system for linking publications to authors. You can help! If you notice any inaccuracies, please sign in and mark papers as correct or incorrect matches. If you identify any major omissions or other inaccuracies in the publication list, please let us know.

Year Citation  Score
1994 Karlin KD, Nasir MS, Cohen BI, Cruse RW, Kaderli S, Zuberbuehler AD. Reversible Dioxygen Binding and Aromatic Hydroxylation in O2-Reactions with Substituted Xylyl Dinuclear Copper(I) Complexes: Syntheses and Low-Temperature Kinetic/Thermodynamic and Spectroscopic Investigations of a Copper Monooxygenase Model System Journal of the American Chemical Society. 116: 1324-1336. DOI: 10.1021/Ja00083A018  0.794
1994 Karlin KD, Nasir MS, Cohen BI, Cruse RW, Kaderli S, Zuberbühler AD. Reversible dioxygen binding and aromatic hydroxylation in O2-reactions with substituted xylyl dinuclear copper(I) complexes: Syntheses and low-temperature kinetic/thermodynamic and spectroscopic investigations of a copper monooxygenase model system Journal of the American Chemical Society. 116: 1324-1336.  0.831
1992 Sanyal I, Mahroof-Tahir M, Nasir MS, Ghosh P, Cohen BI, Gultneh Y, Cruse RW, Farooq A, Karlin KD. Reactions of dioxygen (O2) with mononuclear copper(I) complexes: temperature-dependent formation of peroxo- or oxo- (and dihydroxo-) bridged dicopper(II) complexes Inorganic Chemistry. 31: 4322-4332. DOI: 10.1021/Ic00047A020  0.823
1992 Karlin KD, Tyeklar Z, Farooq A, Haka MS, Ghosh P, Cruse RW, Gultneh Y, Hayes JC, Toscano PJ, Zubieta J. Dioxygen-copper reactivity and functional modeling of hemocyanins. Reversible binding of O2 and carbon monoxide to dicopper(I) complexes [CuI2(L)]2+ (L = dinucleating ligand) and the structure of a bis(carbonyl) adduct, [CuI2(L)(CO)2]2+ Inorganic Chemistry. 31: 1436-1451. DOI: 10.1021/Ic00034A026  0.797
1992 Sanyal I, Mahroof-Tahir M, Nasir MS, Ghosh P, Cohen BI, Gultneh Y, Cruse RW, Farooq A, Karlin KD, Liu S, Zubieta J. Reactions of dioxygen (O2) with mononuclear copper(I) complexes: Temperature-dependent formation of peroxo- or oxo- (and dihydroxo-) bridged dicopper(II) complexes Inorganic Chemistry. 31: 4322-4332.  0.822
1992 Karlin KD, Tyeklár Z, Farooq A, Haka MS, Ghosh P, Cruse RW, Gultneh Y, Hayes JC, Toscano PJ, Zubieta J. Dioxygen-copper reactivity and functional modeling of hemocyanins. Reversible binding of O2 and CO to dicopper(I) complexes [CuI 2(L)]2+ (L = dinucleating ligand) and the structure of a bis(carbonyl) adduct, [CuI 2(L)(CO)2]2+ Inorganic Chemistry. 31: 1436-1451.  0.782
1988 Cruse RW, Kaderli S, Karlin KD, Zuberbuehler AD. Kinetic and thermodynamic studies on the reaction of oxygen with two dinuclear copper(I) complexes Journal of the American Chemical Society. 110: 6882-6883. DOI: 10.1021/Ja00228A046  0.662
1988 Karlin KD, Ghosh P, Cruse RW, Farooq A, Gultneh Y, Jacobson RR, Blackburn NJ, Strange RW, Zubieta J. Dioxygen-copper reactivity: generation, characterization, and reactivity of a hydroperoxodicopper(II) complex Journal of the American Chemical Society. 110: 6769-6780. DOI: 10.1021/Ja00228A027  0.831
1988 Cruse RW, Kaderli S, Meyer CJ, Zuberbuehler AD, Karlin KD. Copper-mediated hydroxylation of an arene: kinetics and mechanism of the reaction of a dicopper(II) m-xylyl-containing complex with H2O2 to yield a phenoxodicopper(II) complex Journal of the American Chemical Society. 110: 5020-5024. DOI: 10.1021/Ja00223A020  0.731
1988 Karlin KD, Haka MS, Cruse RW, Meyer GJ, Farooq A, Gultneh Y, Hayes JC, Zubieta J. Dioxygen-copper reactivity. Models for hemocyanin: Reversible O2 and CO binding to structurally characterized dicopper(I) complexes containing hydrocarbon-linked bis[2-(2-pyridyl)ethyl]amine units Journal of the American Chemical Society. 110: 1196-1207. DOI: 10.1021/Ja00212A031  0.827
1988 Karlin KD, Ghosh P, Cruse RW, Farooq A, Gultneh Y, Jacobson RR, Blackburn NJ, Strange RW, Zubieta J. Dioxygen-copper reactivity: Generation, characterization, and reactivity of a hydroperoxo-dicopper(II) complex Journal of the American Chemical Society. 110: 6769-6780.  0.51
1988 Cruse RW, Kaderli S, Karlin KD, Zuberbühler AD. Kinetic and thermodynamic studies on the reaction of O2 with two dinuclear copper(I) complexes Journal of the American Chemical Society. 110: 6882-6883.  0.578
1988 Cruse RW, Kaderli S, Meyer CJ, Zuberbühler AD, Karlin KD. Copper-mediated hydroxylation of an arene: Kinetics and mechanism of the reaction of a dicopper(II) m-xylyl-containing complex with H2O2 to yield a phenoxodicopper(II) complex Journal of the American Chemical Society. 110: 5020-5024.  0.465
1988 Karlin KD, Haka MS, Cruse RW, Meyer GJ, Farooq A, Gultneh Y, Hayes JC, Zubieta J. Dioxygen-copper reactivity. Models for hemocyanin: Reversible O2 and CO binding to structurally characterized dicopper(I) complexes containing hydrocarbon-linked bis[2-(2-pyridyl)ethyl]amine units Journal of the American Chemical Society. 110: 1196-1207.  0.829
1987 Karlin KD, Cruse RW, Gultneh Y. Dioxygen-copper reactivity: A hydroperoxo-dicopper(II) complex Journal of the Chemical Society, Chemical Communications. 599-600. DOI: 10.1039/C39870000599  0.664
1987 Karlin KD, Cruse RW, Gultneh Y, Farooq A, Hayes JC, Zubieta J. Dioxygen-copper reactivity. Reversible binding of O2 and CO to a phenoxo-bridged dicopper(I) complex Journal of the American Chemical Society. 109: 2668-2679. DOI: 10.1021/Ja00243A019  0.745
1987 Pate JE, Cruse RW, Karlin KD, Solomon EI. Vibrational, electronic, and resonance Raman spectral studies of [Cu2(YXL-O-)O2]+, a copper(II) peroxide model complex of oxyhemocyanin Journal of the American Chemical Society. 109: 2624-2630. DOI: 10.1021/Ja00243A013  0.705
1987 Blackburn NJ, Strange RW, Cruse RW, Karlin KD. Dioxygen-copper reactivity: EXAFS studies of a peroxo-dicopper(II) complex Journal of the American Chemical Society. 109: 1235-1237. DOI: 10.1021/Ja00238A037  0.702
1987 Blackburn NJ, Strange RW, Cruse RW, Karlin KD. Dioxygen-copper reactivity: EXAFS studies of a peroxo-dicopper(II) complex Journal of the American Chemical Society. 109: 1235-1237.  0.527
1987 Karlin KD, Cruse RW, Gultneh Y, Farooq A, Hayes JC, Zubieta J. Dioxygen-copper reactivity. Reversible binding of O2 and CO to a phenoxo-bridged dicopper(I) complex Journal of the American Chemical Society. 109: 2668-2679.  0.642
1987 Pate JE, Cruse RW, Karlin KD, Solomon EI. Vibrational, electronic, and resonance Raman spectral studies of [Cu2(XYL-O-)O2]+, a copper(II) peroxide model complex of oxyhemocyanin Journal of the American Chemical Society. 109: 2624-2630.  0.532
1986 Karlin KD, Cruse RW, Haka MS, Gultneh Y, Cohen BI. Dioxygen-copper reactivity: intermediacy of a peroxo-dicopper(II) (dioxygen-copper) complex in the hydroxylation reaction of a model mono-oxygenase system Inorganica Chimica Acta. 125: L43-L44. DOI: 10.1016/S0020-1693(00)81205-0  0.821
1985 Karlin KD, Haka MS, Cruse RW, Gultneh Y. Dioxygen-copper reactivity. Reversible oxygen and carbon monoxide binding by a new series of binuclear copper(I) complexes Journal of the American Chemical Society. 107: 5828-5829. DOI: 10.1021/Ja00306A055  0.829
1985 Karlin KD, Haka MS, Cruse RW, Gultneh Y. Dioxygen-copper reactivity. Reversible O2 and CO binding by a new series of binuclear copper(I) complexes Journal of the American Chemical Society. 107: 5828-5829.  0.829
1984 Karlin KD, Cruse RW, Gultneh Y, Hayes JC, Zubieta J. Peroxide coordination to a dicopper(II) center. Dioxygen binding to a structurally characterized phenoxide-bridged binuclear copper(I) complex Journal of the American Chemical Society. 106: 3372-3374. DOI: 10.1021/Ja00323A063  0.741
1984 Karlin KD, Hayes JC, Gultneh Y, Cruse RW, McKown JW, Hutchinson JP, Zubieta J. Copper-mediated hydroxylation of an arene ― model system for the action of copper monooxygenases: structures of a binuclear Cu(I) complex and its oxygenated product Journal of the American Chemical Society. 106: 2121-2128. DOI: 10.1021/Ja00319A036  0.771
1984 Karlin KD, Cruse RW, McKown JW, Hayes JC, Dahlstrom PL, Zubieta J. Structure and properties of a monomeric copper(II) complex with a N3 tridentate unit containing 2-thio-1-methylimidazole Transition Metal Chemistry. 9: 404-405. DOI: 10.1007/Bf00637030  0.754
1984 Karlin KD, Cruse RW, Gultneh Y, Hayes JC, Zubieta J. Peroxide Coordination To A Dicopper(Ii) Center. Dioxygen Binding To A Structurally Characterized Phenoxide-Bridged Binuclear Copper(I) Complex Cheminform. 15. DOI: 10.1002/Chin.198436286  0.749
1984 Karlin KD, Cruse RW, Gultneh Y, Hayes JC, Zubieta J. Peroxide coordination to a dicopper(II) center. Dioxygen binding to a structurally characterized phenoxide-bridged copper(I) complex Journal of the American Chemical Society. 106: 3372-3374.  0.553
1984 Karlin KD, Hayes JC, Gultneh Y, Cruse RW, McKown JW, Hutchinson JP, Zubieta J. Copper-mediated hydroxylation of an arene: Model system for the action of copper monooxygenases. Structures of a binuclear Cu(I) complex and its oxygenated product Journal of the American Chemical Society. 106: 2121-2128.  0.525
1983 Karlin KD, Hayes JC, Cruse RW, Gultneh Y, Hutchinson JP, Zubieta J. Model complexes for the active sites of reduced and oxidized sites of hemocyanin and tyrosinase. Structures of binuclear Cu(I) and Cu(II) complexes and characterization of a model copper monooxygenase reaction Inorganica Chimica Acta. 79: 98-99. DOI: 10.1016/S0020-1693(00)95130-2  0.776
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