Dienamine Catalysis for Organic Synthesis

Dienamine Catalysis for Organic Synthesis
Author: Kengadarane Anebouselvy
Publisher: Royal Society of Chemistry
Total Pages: 220
Release: 2018-03-02
Genre: Science
ISBN: 1788014324

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In the past decade a new era in asymmetric catalysis has been realised by the discovery of L-proline induced chiral enamines from carbonyls. Inspired by this, researchers have developed many other primary catalytic species in situ, more recently secondary catalytic species such as aminals have been identified for use in asymmetric synthesis. High-yielding asymmetric synthesis of bioactive and natural products through mild catalysis is an efficient approach in reaction engineering. In the early days, synthetic chemists mainly focused on the synthesis of complex molecules, with less attention on the reaction efficiency and eco-friendly conditions. Recent investigations have been directed towards the development of atom economy, eco-friendly and enantioselective synthesis for more targeted and efficient synthesis. Building on the momentum of this rapidly expanding research area, Dienamine Catalysis for Organic Synthesis will provide a comprehensive introduction, from the preformed species, in situ generation and onto their applications in the synthesis of bioactive molecules and natural products.

Catalysis of Organic Reactions

Catalysis of Organic Reactions
Author: Mike G. Scaros
Publisher: CRC Press
Total Pages: 632
Release: 1994-10-20
Genre: Science
ISBN: 9780824793647

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Based on the papers and posters presented at the 15th Conference on Catalysis of Organic Reactions, this work covers developments in the study of catalysis as it relates to organic synthesis, emphasizing applications in industrial processes. Over 1000 bibliographic citations and over 250 tables, drawings, and photographs are provided. Theoretical and practical aspects of the field are highlighted.

Phase Transfer Catalysis in Organic Synthesis

Phase Transfer Catalysis in Organic Synthesis
Author: William P. Weber
Publisher: Springer Science & Business Media
Total Pages: 295
Release: 2012-12-06
Genre: Science
ISBN: 3642463576

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The field of phase transfer catalysis is a tribute to the chemists involved in process development research. Phase transfer catalysis is a solution to numerous cost and yield problems encountered regularly in industrial laboratories. In fact, much of the early work in this area was conducted by industrial chemists although the work was not labelled phase transfer catalysis at the time. We certainly do not intend to minimize the contributions of academic chemists to this field, but it is an unalterable fact that much of the early understanding and many of the early advances came from industrial laboratories. A special tribute is due to Dr. Charles Starks of the Continental Oil Company. By the mid sixties, Starks had formulated the principles of phase transfer catalysis and had applied for patents on many reactions that others were later to examine in somewhat greater detail. His mechanistic model of phase transfer catalysis still stands up well today and is a model for much of the thinking in this area. It is fitting that Starks suggested the name "phase transfer catalysis" by which the whole field is now known. We wish to thank a number of people who have aided us in many ways in the preparation of this volume. We very much appreciate the helpful discussions and insights provided by Drs. Henry Stevens and Andrew Kaman of PPG Industries in Barberton, Ohio. We also thank Dr. L. A.

Enzyme Catalysis in Organic Synthesis, 3 Volume Set

Enzyme Catalysis in Organic Synthesis, 3 Volume Set
Author: Karlheinz Drauz
Publisher: John Wiley & Sons
Total Pages: 2143
Release: 2012-03-26
Genre: Science
ISBN: 3527325476

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This comprehensive three-volume set is the standard reference in the field of organic synthesis, catalysis and biocatalysis. Edited by a highly experienced and highly knowledgeable team with a tremendous amount of experience in this field and its applications, this edition retains the successful concept of past editions, while the contents are very much focused on new developments in the field. All the techniques described are directly transferable from the lab to the industrial scale, making for a very application-oriented approach. A must for all chemists and biotechnologists.

Innovative Catalysis in Organic Synthesis

Innovative Catalysis in Organic Synthesis
Author: Pher G. Andersson
Publisher: John Wiley & Sons
Total Pages: 375
Release: 2012-05-14
Genre: Science
ISBN: 3527330976

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C-H, C-O, C-C, and C-Heteroatom bond forming processes by using metal-ligand approaches for the synthesis of organic compounds of biological, pharmacological and organic nanotechnological utility are the key areas addressed in this book. Authored by a European team of leaders in the field, it brings together innovative approaches for a variety of catalysis reactions and processes frequently applied in organic synthesis into a handy reference work. It covers all major types of catalysis, including homogeneous, heterogeneous, and organocatalysis, as well as mechanistic and computational studies. Special attention is paid to the improvements in efficiency and sustainability of important catalytic processes, such as selective oxidations, hydrogenation, and cross-coupling reactions, and to their utilization in industry. The result is a valuable resource for advanced researchers in both academia and industry, as well as graduate students in organic chemistry aiming for chemo-, regio- or stereoselective synthesis of organic compounds by using novel catalytic systems.

Science of Synthesis: Catalytic Oxidation in Organic Synthesis

Science of Synthesis: Catalytic Oxidation in Organic Synthesis
Author: Kilian Muñiz
Publisher: Thieme
Total Pages: 1425
Release: 2018-03-23
Genre: Science
ISBN: 3132012718

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The development of catalytic systems for the oxidation of organic compounds continues to be of great importance. There is an ongoing and increasing demand for methods that are selective, proceed under mild conditions, and adhere to green chemistry principles. "Science of Synthesis: Catalytic Oxidation in Organic Synthesis" includes the latest developments in the field, as well as selective coverage of more well-established methods. Systems based on metal catalysts, organocatalysts, and biomimetic oxidation are covered, and there is a particular focus on asymmetric processes. Scope, limitations, and mechanism of the reactions are discussed and key experimental procedures are included. Typical examples of target synthesis are often provided to show the utility and inspire further applications.

Asymmetric Synthesis II

Asymmetric Synthesis II
Author: Mathias Christmann
Publisher: John Wiley & Sons
Total Pages: 406
Release: 2013-04-17
Genre: Science
ISBN: 3527672591

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After the overwhelming success of Asymmetric Synthesis - The Essentials, displaying a broad range of organic asymmetric syntheses, this is the second edition with latest subjects and authors. While the aim of the first edition was mainly to honor the achievements of the pioneers in asymmetric syntheses, the aim of this new edition was bringing the current developments, especially from younger colleagues, to the attention of students. The format of the book remained unchanged, i.e. short conceptual overviews by young leaders in their field including a short biography of the authors. The growing multidisciplinary research within chemistry is reflected in the selection of topics including metal catalysis, organocatalysis, physical organic chemistry, analytical chemistry, and its applications in total synthesis, materials research and industry. The prospective reader of this book is a graduate or undergraduate student of advanced organic chemistry as well as the industrial chemist who wants to get a brief update on the current developments in the field.

Science of Synthesis: Dual Catalysis in Organic Synthesis 2

Science of Synthesis: Dual Catalysis in Organic Synthesis 2
Author: G. A. Molander
Publisher: Thieme
Total Pages: 508
Release: 2020-05-22
Genre: Science
ISBN: 313242983X

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The field of dual catalysis has developed rapidly over the last decade, and these volumes define its impact on organic synthesis. The most important, basic concepts of synergistic, dual catalytic cycles are introduced, providing newcomers to the field with reliable information on this new approach to facilitating the synthesis of organic molecules. Background information and reliable procedures for challenging transformations in synthesis are presented, applying the concept of cooperative dual catalysis as a means of increasing molecular complexity in the most efficient manner. The most useful, practical, and reliable methods for dual catalysis combining metal catalysts, organocatalysts, photocatalysts, and biocatalysts are presented.

Organocatalysis

Organocatalysis
Author: Maurizio Benaglia
Publisher: de Gruyter
Total Pages: 0
Release: 2021
Genre: Business & Economics
ISBN: 9783110588033

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Organocatalysis is considered today one of the three pillars in asymmetric catalysis, along with biocatalysis and organometallic catalysis. The current book gives an overview of the new reactions, the catalysts and their activation strategies reported in recent years. In addition, the applications of organocatalysis in total synthesis, radical reactions, flow chemistry and industrial practice are discussed.

Science of Synthesis: Dual Catalysis in Organic Synthesis 1

Science of Synthesis: Dual Catalysis in Organic Synthesis 1
Author: G. A. Molander
Publisher: Thieme
Total Pages: 490
Release: 2020-05-22
Genre: Science
ISBN: 3132429783

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The field of dual catalysis has developed rapidly over the last decade, and these volumes define its impact on organic synthesis. The most important, basic concepts of synergistic, dual catalytic cycles are introduced, providing newcomers to the field with reliable information on this new approach to facilitating the synthesis of organic molecules. Background information and reliable procedures for challenging transformations in synthesis are presented, applying the concept of cooperative dual catalysis as a means of increasing molecular complexity in the most efficient manner. The most useful, practical, and reliable methods for dual catalysis combining metal catalysts, organocatalysts, photocatalysts, and biocatalysts are presented.