Higher Oxidation State Organopalladium and Platinum Chemistry [electronic resource] /edited by Allan J. Canty.
by Canty, Allan J [editor.]; SpringerLink (Online service).
Material type:
Item type | Current location | Call number | Status | Date due | Barcode |
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MAIN LIBRARY | QD410-412.5 (Browse shelf) | Available |
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Five-Coordinate Platinum(IV) Complexes -- The Role of Higher Oxidation State Species in Platinum-Mediated C-H Bond Activation and Functionalization -- Carbon-Heteroatom Bond-Forming Reductive Elimination from Palladium(IV) Complexes -- Palladium(IV) Complexes as Intermediates in Catalytic and Stoichiometric Cascade Sequences Providing Complex Carbocycles and Heterocycles -- h1-Alkynyl Chemistry for the Higher Oxidation States of Palladium and Platinum -- Palladium(III) in Synthesis and Catalysis -- Organometallic Platinum(II) and Palladium(II) Complexes as Donor Ligands for Lewis-Acidic d10 and s2 Centers.
Kyle A. Grice, Margaret L. Scheuermann and Karen I. Goldberg: Five-Coordinate Platinum(IV) Complexes.- Jay A. Labinger and John E. Bercaw: The Role of Higher Oxidation State Species in Platinum-Mediated C-H Bond Activation and Functionalization.- Joy M. Racowski and Melanie S. Sanford: Carbon-Heteroatom Bond-Forming Reductive Elimination from Palladium(IV) Complexes.- Helena C. Malinakova: Palladium(IV) Complexes as Intermediates in Catalytic and Stoichiometric Cascade Sequences Providing Complex Carbocycles and Heterocycles.- Allan J. Canty and Manab Sharma: h1-Alkynyl Chemistry for the Higher Oxidation States of Palladium and Platinum.- David C. Powers and Tobias Ritter: Palladium(III) in Synthesis and Catalysis.- Marc-Etienne Moret: Organometallic Platinum(II) and Palladium(II) Complexes as Donor Ligands for Lewis-Acidic d10 and s2 Centers.
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