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Modern Carbonylation Methods - ISBN 9783527318964

Modern Carbonylation Methods

ISBN 9783527318964

Autor: László Kollár

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 1 043,70 zł

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ISBN13:      

9783527318964

ISBN10:      

3527318968

Autor:      

László Kollár

Oprawa:      

Hardback

Rok Wydania:      

2008-03-26

Ilość stron:      

383

Wymiary:      

245x178

Tematy:      

PN

Comprehensively covering modern carbonylation chemistry, this book is an indispensable companion for all synthetic chemists working in industry and academia. This monograph contains everything there is to know from recent advances in the investigation of carbonylation catalysts, via coordination chemistry to the synthetic application of transition metal catalyzed carbonylations.

Spis treści:
Preface.
List of Contributors.
1 Bite Angle Effects of Diphosphines in Carbonylation Reactions (Piet W.N.M. van Leeuwen, Zoraida Freixa).
1.1 Introduction.
1.2 Rhodium–Catalyzed Hydroformylation.
1.3 Platinum–Catalyzed Alkene Hydroformylation.
1.4 Palladium–Catalyzed CO/Ethene Copolymerization.
1.5 Rhodium–Catalyzed Methanol Carbonylation: the Ligand–Modified Monsanto Process.
2 Reactivity of Pincer Complexes Toward Carbon Monoxide (David Morales–Morales).
2.1 Reactivity of CO with Pincer Complexes of the Group 10 (Ni, Pd, Pt).
2.2 Reactivity of CO with Pincer Complexes of the Group 9 (Rh and Ir).
2.3 Reactivity of CO with Pincer Complexes of the Group 8 (Fe, Ru, Os).
2.4 Final Remarks.
2.5 Acknowledgements.
3 Enantioselective Carbonylation Reactions (Carmen Claver, Cyril Godard, Aurora Ruiz, Oscar Pàmies, Montserrat Diéguez).
3.1 Introduction.
3.2 Rhodium–Catalyzed Asymmetric Hydroformylation.
3.3 Pd–catalyzed Asymmetric Hydroxy– and Alkoxycarbonylation Reactions.
3.4 Conclusion.
4 Microwave–Promoted Carbonylations (Johan Wannberg, Mats Larhed).
4.1 Introduction.
4.2 Microwave Heating in Organic Chemistry.
4.3 Microwave–Promoted Carbonylations.
4.4 Conclusion.
5 Recent Advances in Two–Phase Carbonylation (Detlef Selent).
5.1 Introduction.
5.2 Carbonylation Reactions.
5.3 Methodology and Stability of Catalysts.
5.4 Innovative Concepts for Catalyst Separation in Biphasic Homogeneous Catalysis.
6 Catalytic Carbonylations in Ionic Liquids (Crestina S. Consorti, Jairton Dupont).
6.1 Introduction.
6.2 Brief History.
6.3 Hydroformylation.
6.4 Aryl Halides and Alcohols.
6.5 Carbonylation of Amines.
6.6 Carbonylation of C::C and C:::C bonds (Hydroesterification and Aminocarbonylation, Pauson–Khand, and Copolymerization).
6.7 Via C–H Bond Activation.
6.8 Stoichiometric Reactions and Mechanism.
6.9 Conclusions and Perspectives.
7 Carbonylation of Alkenes and Dienes (Tamás Kégl).
7.1 Hydroformylation of Alkenes and Dienes.
7.2 Hydrocarboxylation 185
7.3 Hydroalkoxycarbonylation.
7.4 Tandem Carbonylation Reactions.
8 Carbonylation of Diazoalkanes (Neszta Ungvári, Ferenc Ungváry).
8.1 Reactions of Diazoalkanes with Carbon Monoxide in the Absence of Transition Metal Complexes.
8.2 Reactions of Diazoalkanes with Carbon Monoxide in the Presence of Transition Metal Complexes.
8.3 Concluding Remarks.
9 Carbonylation of Enolizable Ketones (Enol Triflates) and Iodoalkenes (Antonio Arcadi).
9.1 Introduction.
9.2 Reactions of a,b–Unsaturated Acylpalladium Complexes with Nucleophiles.
9.3 Reactions of a,b–Unsaturated Acylpalladium Complexes with Organometals and Related Carbon Nucleophiles.
9.4 Reactions of a,b–Unsaturated Acylpalladium Complexes with p–Bond Systems.
9.5 Concluding Remarks.
10 Recent Developments in Alkyne Carbonylation (Simon Doherty, Julian G. Knight, Catherine H. Smyth).
10.1 Introduction.
10.2 Hydrochalcogenocarbonylation and Dichalcogenocarbonylations.
10.3 Nonoxidative Hydroxy– and Alkoxycarbonylation of Alkynes.
10.4 Aminocarbonylation of Terminal Alkynes.
10.5 Oxidative Carbonylations.
10.6 Carbonylative Annulation of Alkynes.
10.7 Summary and Outlook.
11 Carbonylation of Allenes (Akihiro Nomoto, Akiya Ogawa).
1 1.1 Anti–Addition Process.
11.2 Vinylidenyl p–Allyl Metal Formation Process.
11.3 Hydrometalation or Heteroatom–Metalation Process.
11.4 Carbometalation Process.
12 Homogeneous Carbonylation Reactions in the Synthesis of Compounds of Pharmaceutical Importance (Rita Skoda–Földes).
12.1 Introduction.
12.2 Carbonylation of Alkenes (or Alkynes).
12.3 Carbonylation of Alcohols and Amines.
12.4 Carbonylation of Alkenyl/Aryl Halides or Triflates.
12.5 Concluding Remarks.
13 Palladium–Assisted Synthesis of Heterocycles via Carbonylation Reactions (Elisabetta Rossi).
13.1 Introduction.
13.2 Carbonylative Reactions Involving Oxidative Addition of Pd(0) to Csp2–X Bond.
13.3 Carbonylative Reactions Involving Palladium(II) Salts.
Index.

Nota biograficzna:
László Kollár is the department head of the Department of Inorganic Chemistry at the University of Pécs, Hungary.
Professor Kollár has authored about 150 papers in refereed scientific journals and received numerous scientific awards including the George Olah Prize and the Research Prize of the Hungarian Academy of Sciences.

Okładka tylna:
Comprehensively covering modern carbonylation chemistry, this book is an indispensable companion for all synthetic chemists working in industry and academia. This monograph contains everything there is to know from recent advances in the investigation of carbonylation catalysts, via coordination chemistry to the synthetic application of transition metal catalyzed carbonylations.

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