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The Sixth Edition of a classic in organic chemistry continues its tradition of excellence Now in its sixth edition, March's Advanced Organic Chemistry remains the gold standard in organic chemistry. Throughout its six editions, students and chemists from around the world have relied on it as an essential resource for planning and executing synthetic reactions. The Sixth Edition brings the text completely current with the most recent organic reactions. In addition, the references have been updated to enable readers to find the latest primary and review literature with ease. New features include: More than 25,000 references to the literature to facilitate further research Revised mechanisms, where required, that explain concepts in clear modern terms Revisions and updates to each chapter to bring them all fully up to date with the latest reactions and discoveries A revised Appendix B to facilitate correlating chapter sections with synthetic transformations
Compendium of Organic Synthetic Methods continues the motivation of the series, which is to facilitate the search for quality, selected functional group transformations, organized by reacting functional group of starting material and functional group formed, with full references to each reaction.
The Compendium of Organic Synthetic Methods serves as a handy desktop reference for organic chemists to browse new reactions and transformations of interest, facilitating the search for functional group transformations in the original literature of organic chemistry. Volume 13 contains both functional group transformations and carbon-carbon bond forming reactions from the literature in the years 2005-8. It presents examples of published reactions for the preparation of monofunctional compounds. The Compendium of Organic Synthetic Methods series facilitates the search for quality, selected functional group transformations, organized by reacting functional group of starting material and functional group formed, with full references to each reaction Presents examples of published reactions for the preparation of monofunctional compounds from the literature of 2005-8 Provides a handy reference and a valuable tool to the working organic chemist, allowing a quick check of known organic transformations Stringent criteria for inclusion of reactions, including real synthetic utility of reactions, reagents readily available or easily prepared and handled in the laboratory
Provides synthetic chemists with a method for rapid retrieval of information from the literature, listing material by reaction type rather than by author name or publication date. Each updated volume presents the latest synthetic methods for preparation of monofunctional and difunctional compounds. The organization is logical and easy to follow; sections are arranged according to the possible interconversions between the major functional groups. Enables synthetic chemists to keep abreast of recent developments and retrieve a specific piece of information quickly and easily.
This book offers an alternative proof of the Bestvina?Feighn combination theorem for trees of hyperbolic spaces and describes uniform quasigeodesics in such spaces. As one of the applications of their description of uniform quasigeodesics, the authors prove the existence of Cannon?Thurston maps for inclusion maps of total spaces of subtrees of hyperbolic spaces and of relatively hyperbolic spaces. They also analyze the structure of Cannon?Thurston laminations in this setting. Furthermore, some group-theoretic applications of these results are discussed. This book also contains background material on coarse geometry and geometric group theory.
More than a one-volume listing of synthetic methods, Compendium ofOrganic Synthetic Methods offers chemists a highly focused andselective look at several thousand functional grouptransformations. Used by more professionals than any comparablereference on the market, this valuable desktop resource providesquick access to the recipes of the newest, most useful reactionsand transformations. It also affords professionals an unparalleledopportunity to browse the vast body of recent literature for newreactions and transformations that may be of interest. Featuring 1,200 more entries than its predecessor, Volume 8 coversfunctional group transformations and carbon-carbon bond formingreactions appearing in the literature from 1990 through 1992. Itpresents approximately 1,400 examples of published reactions forthe preparation of monofunctional compounds and approximately 1,640examples of reactions that prepare difunctional compounds withvarious functional groups. It also features 60 more reviews thanVolume 7. As in all the previous Compendium volumes, the classificationschemes used allow for quick and easy reference and informationretrieval. Chemical transformations are classified first by thereacting functional group of the starting material and then by thefunctional group formed. The transformation, major reagents thateffect the transformation, yield percentage, and stereochemistryare all clearly shown. The Compendium also includes indices forboth monofunctional and difunctional compounds as an efficientmeans of guiding you to specific classes of transformations. Compendium of Organic Synthetic Methods, Volume 8 providesprofessional chemists and students unparalleled access to thewealth of methods, reactions, and transformations in contemporaryorganic chemistry.
Organic transformations are the heart of synthetic organic chemistry. The Compendium of Organic Synthetic Methods series facilitates the search for the most useful functional group transformations in organic chemistry. Compendium of Organic Synthetic Methods, Volume 9, provides quick access to proven protocols for the newest, most useful reactions and transformations. It contains both functional group transformations and bond-forming reactions, and focuses on the use of reagents readily available or easily prepared and handled in the laboratory. This valuable desktop resource contains over 1,200 examples of published reactions for the preparation of monofunctional compounds in a handy reference, as well as over 800 examples of difunctional compounds, and features over 30 more reviews than Volume 8. As in all the previous Compendium volumes, the classification schemes used allow for quick and easy reference and information retrieval. Chemical transformations are classified by the reacting functional group of the starting material and then by the functional group formed. Helpful indices are provided for both monofunctional and difunctional compounds as an efficient means of guidance to specific classes of transformations. Compendium of Organic Synthetic Methods, Volume 9, is an unparalleled source of information on the methods, reactions, and transformations in contemporary organic chemistry for the working chemist and student. Volume 9 in the series originated by I. T. Harrison and S. Harrison
Compendium of Organic Synthetic Methods, Volume 11 continues the motivation of the series, which is to facilitate the search for quality, selected functional group transformations, organized by reacting functional group of starting material and functional group formed, with full references to each reaction.
Organic Synthesis, Fourth Edition, provides a reaction-based approach to this important branch of organic chemistry. Updated and accessible, this eagerly-awaited revision offers a comprehensive foundation for graduate students coming from disparate backgrounds and knowledge levels, to provide them with critical working knowledge of basic reactions, stereochemistry and conformational principles. This reliable resource uniquely incorporates molecular modeling content, problems, and visualizations, and includes reaction examples and homework problems drawn from the latest in the current literature. In the Fourth Edition, the organization of the book has been improved to better serve students and professors and accommodate important updates in the field. The first chapter reviews basic retrosynthesis, conformations and stereochemistry. The next three chapters provide an introduction to and a review of functional group exchange reactions; these are followed by chapters reviewing protecting groups, oxidation and reduction reactions and reagents, hydroboration, selectivity in reactions. A separate chapter discusses strategies of organic synthesis, and he book then delves deeper in teaching the reactions required to actually complete a synthesis. Carbon-carbon bond formation reactions using both nucleophilic carbon reactions are presented, and then electrophilic carbon reactions, followed by pericyclic reactions and radical and carbene reactions. The important organometallic reactions have been consolidated into a single chapter. Finally, the chapter on combinatorial chemistry has been removed from the strategies chapter and placed in a separate chapter, along with valuable and forward-looking content on green organic chemistry, process chemistry and continuous flow chemistry. Throughout the text, Organic Synthesis, Fourth Edition utilizes Spartan-generated molecular models, class tested content, and useful pedagogical features to aid student study and retention, including Chapter Review Questions, and Homework Problems. A full Solutions Manual is also available online for qualified instructors, to support teaching. - Winner, 2018 Textbook Excellence Award (Texty) from the Textbook and Academic Authors Association - Fully revised and updated throughout, and organized into 19 chapters for a more cogent and versatile presentation of concepts - Includes reaction examples taken from literature research reported between 2010-2015 - Features new full-color art and new chapter content on process chemistry and green organic chemistry - Offers valuable study and teaching tools, including Chapter Review Questions and Homework Problems for students; Solutions Manual for qualified course instructors
Compendium of Organic Synthetic Methods continues the motivation of the series, which is to facilitate the search for quality, selected functional group transformations, organized by reacting functional group of starting material and functional group formed, with full references to each reaction.
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