Michael John Doyle
Royal Dutch Shell
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Featured researches published by Michael John Doyle.
Journal of Organometallic Chemistry | 1991
Eite Drent; J. A. M. van Broekhoven; Michael John Doyle
Abstract A class of highly efficient homogeneous palladium catalyst systems has been developed for the production of perfectly alternating copolymers of carbon monoxide with ethylene. Mixtures of carbon monoxide, ethylene and propene are converted into the corresponding alternating carbon monoxide/olefin terpolymers in which C 3 units randomly replace ethylene units along the chain. The essential features of the new catalyst systems are that they are formed by the combination of an equimolar quantity of a suitable bidentate phosphine ligand with a palladium(II) species in which the counter anions are weakly coordinating. For a series of diphenylphosphinoalkanes of general formula Ph 2 P(CH 2 ) m PPh 2 the most efficient catalyst system for the production of high-molecular-weight polyketones is that with m = 3. High rates with conversions of more than one million molecules of carbon monoxide and ethylene per palladium center are obtained. In methanol, the majority of the polymer chains produced are polyketo-esters of general formula H(CH 2 CH 2 CO) n OMe; analyses of methanol-soluble oligomer fractions shows that diesters MeOCO(CH 2 CH 2 CO) n OMe and diketones H(CH 2 CH 2 CO) n CH 2 CH 3 are also formed. Two interlinked catalytic cycles are invoked to account for the formation of polyketones with keto-ester, diester and diketone end groups.
Journal of Organometallic Chemistry | 1979
Michael John Doyle; Arjan P. Kouwenhoven; Cornelis A. Schaap; Bart van Oort
Abstract Solutions of dodecacarbonyl- triangulo -triruthenium [Ru 3 (CO) 12 ] have been shown to be catalyst precursors for the Fischer-Tropsch reaction; the catalyst formed under the reaction conditions is heterogeneous; no indication of homogeneous activity was found.
Archive | 1995
Eite Drent; J. A. M. van Broekhoven; Michael John Doyle; P. K. Wong
A class of highly efficient homogeneous palladium catalyst systems has been developed for the production of perfectly alternating copolymers of carbon monoxide with ethylene. Mixtures of carbon monoxide, ethylene and propene are converted to the corresponding alternating carbon monoxide/olefin terpolymers in which C3 units randomly replace ethylene units along the chain. The essential features of the catalyst systems described herein are that they are formed by the equimolar combination of a suitable bidentate phosphine ligand with a palladium(II) species in which the counter anions are weakly coordinating. For a series of diphenylphosphinoalkanes of general formula Ph2P(CH2)mPPh2 the most efficient catalyst system for production of high molecular-weight polyketones was found for m = 3. High rates with conversions of more than one million moles of carbon monoxide and ethylene per palladium centre were obtained. In methanol, the majority of the copolymer chains produced are polyketo esters of general formula H(CH2CH2CO)nOMe (I); analysis of methanol-soluble oligomer fractions show that diesters MeOCO(CH2CH2CO)nOMe (II) and diketones H(CH2CH2CO)nCH2CH3 (III) are also formed.
Archive | 1987
Michael John Doyle; Ravenswaay-Claasen Johan Christiaan Van; Gerrit Gerardus Rosenbrand; Richard Lewin Wife
Archive | 1994
Michael John Doyle; Hero Heeres
Archive | 1986
Broekhoven Johannes Adrianus Maria Van; Michael John Doyle
Archive | 1990
Michael John Doyle; Johan van Gogh; Johan C. van Ravenswaay Claasen
Archive | 1993
Michael John Doyle
Journal of Polymer Science Part A | 1993
J. A. M. van Broekhoven; Michael John Doyle; Eite Drent
Archive | 1990
Michael John Doyle; Gogh Johan Van; Ravenswaay Claasen Johan C Van