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Monopnictogen Ferrocenes as Ligands for Asymmetric Catalysis

Monopnictogen Ferrocenes as Ligands for Asymmetric Catalysis
Author: Raphael Aardoom
Publisher: Sudwestdeutscher Verlag Fur Hochschulschriften AG
Total Pages: 220
Release: 2013
Genre:
ISBN: 9783838136288

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Asymmetric catalysis has become a vital tool for modern synthetic chemists. Ferrocenes are widely-used building blocks of stereoselective catalysts; derivatives such as Josiphos rank amongst the most versatile and efficient ligands. In this thesis, a chiral ferrocene was used as a building block for the synthesis of a variety of monopnictogen ferrocenes. After a general introduction, the synthesis of aminoferrocenes is discussed and preparations and applications of novel substance classes, such as bis(ferrocenyl)NacNac and ferrocenyl ureas, are presented. Furthermore, the chiral ferrocenyl backbone was used for the preparation of phosphinoferrocenes and their potential in gold(I)- and ruthenium(II)- catalyzed reactions was assessed.


Chiral Ferrocenes in Asymmetric Catalysis

Chiral Ferrocenes in Asymmetric Catalysis
Author: Li-Xin Dai
Publisher: John Wiley & Sons
Total Pages: 433
Release: 2010-02-01
Genre: Science
ISBN: 3527322809

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This book meets the long-felt need for a reference on ferrocenes with the focus on catalysis. It provides a thorough overview of the synthesis and characterization of different types of chiral ferrocene ligands, their application to various catalytic asymmetric reactions, and versatile chiral materials as well as drug intermediates synthesized from them. Written by the "who's who" of ferrocene catalysis, this is a guide to the design of new ferrocene ligands and synthesis of chiral synthetic intermediates, and will thus be useful for organic, catalytic and synthetic chemists working in academia, industrial research or process development.


Ferrocenes

Ferrocenes
Author: Petr Stepnicka
Publisher: John Wiley & Sons
Total Pages: 670
Release: 2008-04-15
Genre: Science
ISBN: 9780470985656

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Ferrocene—the prototypical metallocene—is a fascinating molecule. Even though it was first discovered over fifty years ago, research into ferrocene-containing compounds continues apace, largely stimulated by their successful applications in catalysis, materials science and bioorganometallic chemistry. Ferrocene derivatives are now recognised as useful starting materials for the preparation of new organometallic complexes and functional materials, efficient catalyst components, as well as redox-active modifiers to biomolecules. Ferrocenes: Ligands, Materials and Biomolecules provides the reader with a background overview and describes recent advances in the development and application of ferrocene compounds, including: synthesis and catalytic utilisation of chiral and non-chiral ferrocene ligands ferrocene-based sensors electrooptical materials ferrocene polymers liquid-crystalline materials crystal engineering with ferrocene compounds the bioorganometallic chemistry of ferrocene Ferrocenes: Ligands, Materials and Biomolecules is an essential guide for anyone working in the fields of organometallic synthesis and catalysis, materials science and bioorganometallic chemistry.


Ferrocenes

Ferrocenes
Author: Antonio Togni
Publisher: John Wiley & Sons
Total Pages: 560
Release: 2008-07-11
Genre: Science
ISBN: 352761558X

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With applications ranging from asymmetric catalysis to magnetic materials, ferrocene is one of the most versatile building blocks in synthesis. This book captures the multidisciplinary nature of ferrocene research, including topics such as ferrocene-containing polymers, ferrocene-containing thermotropic liquid crystals, chiral ferrocene derivatives, and ferrocene-containing charge-transfer materials. In addition, the reader will find * valuable information for planning syntheses * over 70 tables, making relevant data available at a glance * carefully selected references, providing an easy access to the primary literature Up-to-date, and written by leading international experts in the field, among them R. Deschenaux, C. D. Hall, Y. Butsugan, and R. Herrmann, this book is a welcome source of in-depth information for graduate students and professionals in organic, organometallic, and polymer chemistry, as well as in materials science.