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Modern Gold Catalyzed Synthesis

Modern Gold Catalyzed Synthesis
Author: A. Stephen K. Hashmi
Publisher: John Wiley & Sons
Total Pages: 419
Release: 2012-05-21
Genre: Science
ISBN: 3527319522

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With its impressive features, gold has led to completely new reaction types in recent years, which in turn have strongly influenced both organic catalysis and material science. Other fields where a significant amount of new results has been obtained include nanotechnology, self assembly/supramolecular systems and biochemical/medicinal chemistry. As a result, gold is one of the hottest topics in catalysis at the moment, with an increasing amount of research being carried out in this field. While focusing on homogeneous catalysis, this monograph also covers the main applications in heterogeneous catalysis. Following a look at the gold-catalyzed addition of heteroatom nucleophiles to alkynes, it goes on to discuss gold-catalyzed additions to allenes and alkenes, gold-catalyzed benzannulations, cycloisomerization and rearrangement reactions, as well as oxidation and reduction reactions. The whole is finished off with a section on gold-catalyzed aldol and related reactions and the application of gold-catalyzed reactions to natural product synthesis. Of interest to synthetic chemists and inorganic chemists, as well as organic chemists working in homogeneous catalysis, physical and technical chemists.


Gold Catalysis

Gold Catalysis
Author: F. Dean Toste
Publisher:
Total Pages: 564
Release: 2014-08-01
Genre: Catalysis
ISBN: 9781848168534

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Research on designing new catalytic systems has been one of the most important fields in modern organic chemistry, and one reason for this is the predominant contribution of catalysis to the concepts of atom economy and green chemistry in the 21st century. Gold, considered catalytically inactive for a long time, is now a fascinating partner of modern chemistry, as scientists such as Bond, Haruta, Hutchings, Ito and Hayashi opened new perspectives for the whole synthetic chemist community. This book presents the major advances in homogeneous catalysis, emphasizing the methodologies that create carbon-carbon and carbon-heteroatom bonds, the applications that create diversity and synthesize natural products, and the recent advances and challenges in asymmetric catalysis and computational research. The Handbook of Homogeneous Gold Catalysis provides readers with in-depth information about gold-catalyzed reactions and presents several explanations for the scientific design of a catalyst. Readers will be able to understand the entire gold area and find solutions to problems in catalysis. Featuring prominent authors, who are experts in their respective fields, this is the first book dedicated to homogeneous gold chemistry. Contents: From Gold in Nature to Gold Catalysts (S Kramer and F Gagosz); Oxidation and Reduction Reactions (L Zhang); Gold-Catalyzed Addition of Carbon Nucleophile to C-C Multiple Bond (B Simmons and H C Shen); Gold-Catalyzed Addition of Heteroatom Nucleophile to C-C Multiple Bond (N Asao, N Hatakeyama and Y Yamamoto); Gold-Catalyzed Synthesis of Heterocycles (A Arcadi); Multi-Component Reactions (R Skouta and C J Li); Gold Catalyzed Tandem and Cascade Reactions (R-S Liu); Cycloisomerization Reactions of 1, n -Enynes (N Huguet and A Echavarren); Gold-Catalyzed Reaction of Propargylic Esters (L Fensterbank, J-P Goddard, M Malacria and S Simonneau); Gold-Catalyzed Cross-Coupling Reactions (S Blum); Gold-Catalyzed Reactions: A Computational Approach (E Soriano & J Marco-Contelles); Asymmetric Gold-Catalyzed Reactions (P Y Toullec, A Pradal and V Michelet); Gold Catalysis in Natural Product Synthesis (M Gesinski and F D Toste). Readership: Student, professionals.


Gold Catalysis: An Homogeneous Approach

Gold Catalysis: An Homogeneous Approach
Author: Veronique Michelet
Publisher: World Scientific
Total Pages: 564
Release: 2014-06-20
Genre: Science
ISBN: 1783265558

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Research on designing new catalytic systems has been one of the most important fields in modern organic chemistry. One reason for this is the predominant contribution of catalysis to the concepts of atom economy and green chemistry in the 21st century. Gold, considered catalytically inactive for a long time, is now a fascinating partner of modern chemistry, as scientists such as Bond, Teles, Haruta, Hutchings, Ito and Hayashi opened new perspectives for the whole synthetic chemist community. This book presents the major advances in homogeneous catalysis, emphasizing the methodologies that create carbon-carbon and carbon-heteroatom bonds, the applications that create diversity and synthesize natural products, and the recent advances and challenges in asymmetric catalysis and computational research.It provides readers with in-depth information about homogeneous gold-catalyzed reactions and presents several explanations for the scientific design of a catalyst. Readers will be able to understand the entire gold area and find solutions to problems in catalysis.Gold Catalysis — An Homogeneous Approach is part of the Catalytic Science Series and features prominent authors who are experts in their respective fields.


Homogeneous Gold Catalysis

Homogeneous Gold Catalysis
Author: LeGrande M. Slaughter
Publisher: Springer
Total Pages: 292
Release: 2015-03-30
Genre: Science
ISBN: 3319137220

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The series Topics in Current Chemistry presents critical reviews of the present and future trends in modern chemical research. The scope of coverage is all areas of chemical science including the interfaces with related disciplines such as biology, medicine and materials science. The goal of each thematic volume is to give the non-specialist reader, whether in academia or industry, a comprehensive insight into an area where new research is emerging which is of interest to a larger scientific audience. Each review within the volume critically surveys one aspect of that topic and places it within the context of the volume as a whole. The most significant developments of the last 5 to 10 years are presented using selected examples to illustrate the principles discussed. The coverage is not intended to be an exhaustive summary of the field or include large quantities of data, but should rather be conceptual, concentrating on the methodological thinking that will allow the non-specialist reader to understand the information presented. Contributions also offer an outlook on potential future developments in the field. Review articles for the individual volumes are invited by the volume editors. Readership: research chemists at universities or in industry, graduate students.


Au-Catalyzed Synthesis and Functionalization of Heterocycles

Au-Catalyzed Synthesis and Functionalization of Heterocycles
Author: Marco Bandini
Publisher: Springer
Total Pages: 294
Release: 2016-07-01
Genre: Science
ISBN: 3319351443

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The series Topics in Heterocyclic Chemistry presents critical reviews on present and future trends in the research of heterocyclic compounds. Overall the scope is to cover topics dealing with all areas within heterocyclic chemistry, both experimental and theoretical, of interest to the general heterocyclic chemistry community. The series consists of topic related volumes edited by renowned editors with contributions of experts in the field. All chapters from Topics in Heterocyclic Chemistry are published Online First with an individual DOI. In references, Topics in Heterocyclic Chemistry is abbreviated as Top Heterocycl Chem and cited as a journal


New Gold-Catalyzed Reactions and Applications for the Synthesis of Alkaloids

New Gold-Catalyzed Reactions and Applications for the Synthesis of Alkaloids
Author: Ana Escribano Cuesta
Publisher: Springer Science & Business Media
Total Pages: 202
Release: 2013-08-13
Genre: Science
ISBN: 3319007025

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Ana Escribano Cuesta's thesis presents a detailed study of the inter- and intramolecular reactions of carbonyl compounds with 1,6-enynes using gold (I) complexes. An important part of the work involved streamlining the variables that allow the selective synthesis of different products such as tricyclic compounds, dihydropyrans, 1,3-dienes or cyclobutenes. The second chapter highlights the importance and difficulties in synthesising a cyclobutene subunit and the author includes a detailed description of how the products were prepared. The final chapter outlines the synthesis of lundurines using methodology developed by the author's research group for intramolecular gold-catalyzed cyclization of indoles with alkynes. The lundurine products developed in this work show significant in vitro cytoxicity toward B16 melanoma cells. The work in this thesis has led to a number of publications in high-profile chemistry journals.


Development and Mechanistic Investigations of Gold-Catalyzed Reactions

Development and Mechanistic Investigations of Gold-Catalyzed Reactions
Author: Nathan David Shapiro
Publisher:
Total Pages: 596
Release: 2010
Genre:
ISBN:

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Historically, chemists have been motivated by problems in total synthesis or by a desire to develop reactions of broad utility. In answer to these challenges, several approaches to fundamental research have been developed. In chapter 1, we describe how our reactivity-driven approach has led to the discovery of numerous synthetic tools. The development of new synthetically useful methodology often rests on an understanding of the mechanistic underpinnings of the desired transformation. This is particularly true when this knowledge forms the basis for subsequent mechanistic proposals. The coordination of an alkyne to a cationic Au(I) complex represents the prototypical mechanistic starting place for many Au(I)-catalyzed reactions. In chapter two, we describe the isolation and characterization of a gold(I)-coordinated alkyne. The crystal structure of this compound is compared to related Ag(I) and Cu(I) compounds. With these structures in hand, we can begin to understand the unique ability of Au(I) complexes to serve as effective %pi;-activation catalysts, especially in understanding why gold is often more effective than copper or silver. In addition to being able to activate %pi;-bonds toward nucleophilic attack, it has been proposed that gold is also capable of stabilizing adjacent carbocations. Such species (i.e. [L-Au-CR2]+) have been referred to as gold-carbenoids or gold-stabilized carbocations. In chapter 3, we describe a bonding model for these intermediates that suggests that while the gold-carbon bond order is generally less than or equal to one, this bond includes both %sigma;- and %pi;-type bonding. Furthermore, the position of a given Au-stabilized intermediate on a continuum ranging from gold-stabilized singlet carbene to gold-coordinated carbocation is dictated by both the carbene substituents and the ancillary ligand. This model provides an explanation for observed ancillary ligand effects and should enable more efficient reaction optimization. In chapter 4, a series of gold(I)-catalyzed rearrangement reactions of alkynyl sulfoxides, sulfimides and sulfur ylides are reported. Homopropargyl sulfoxides are rearranged to benzothiepinones or benzothiopines, while %alpha;-thioenones are formed in the reaction of propargyl sulfoxides. It is proposed that these reactions proceed via an %alpha;-carbonyl gold-carbenoid intermediate formed through gold-promoted oxygen atom transfer from sulfoxide to alkyne. In chapter 5, the development of a convenient gold(III)-catalyzed synthesis of azepines from the intermolecular annulation of propargyl esters and %alpha;, %beta;-unsaturated imines is discussed. Mechanistic experiments suggest that this formal [4 + 3]-cycloaddition reaction proceeds via a stepwise process involving intermolecular trapping of a gold-carbenoid intermediate and subsequent intramolecular trapping of the resulting allyl-gold intermediate. In chapter 6, we discuss the gold(III)-catalyzed [3+3]-cycloaddition reaction of propargyl esters and azomethine imines. This reaction provides a rapid entry into a wide range of substituted tetrahydropyridazine derivatives from simple starting materials. A mechanism similar to that proposed in chapter 5 is discussed, along with a detailed description of the consequences of this mechanism on the diastereoselectivity of the annulation reaction. In addition, a strategy for rendering this reaction asymmetric is presented.