Modern AlleneChemistry现代艾伦化学 英文版.pdf
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1、Modern Allene ChemistryEdited byNorbert Krause and A.Stephen K.HashmiModern Allene Chemistry.Edited by N.Krause and A.S.K.HashmiCopyright?2004 WILEY-VCH Verlag GmbH&Co.KGaA,WeinheimISBN:3-527-30671-4Further Titles of InterestR.Gleiter,H.Hopf(Eds.)Modern Cyclophane Chemistry2004,ISBN 3-527-30713-3R.M
2、ahrwald(Ed.)Modern Aldol ReactionsTwo Volumes2004,ISBN 3-527-30714-1T.Takeda(Ed.)Modern Carbonyl OlefinationMethods and Applications2004,ISBN 3-527-30634-XD.Astruc(Ed.)Modern Arene ChemistryConcepts,Synthesis,and Applications2002,ISBN 3-527-30489-4Modern Allene ChemistryVolume 1Edited byNorbert Krau
3、se and A.Stephen K.HashmiEditorsProfessor Dr.Norbert KrauseUniversity of DortmundOrganic Chemistry IIOtto-Hahn-Strasse 644227DortmundGermanyProfessor Dr.A.Stephen K.HashmiUniversity of StuttgartDepartment of Organic ChemistryPfaffenwaldring 5570569StuttgartGermany&All books published by Wiley-VCH ar
4、e carefully pro-duced.Nevertheless,authors,editors,and publisherdo not warrant the information contained in thesebooks,including this book,to be free of errors.Readers are advised to keep in mind that statements,data,illustrations,procedural details or other itemsmay inadvertently be inaccurate.Libr
5、ary of Congress Card No.:applied forBritish Library Cataloguing-in-Publication DataA catalogue record for this book is available from theBritish Library.Bibliographic information published byDie Deutsche BibliothekDie Deutsche Bibliothek lists this publication in theDeutsche Nationalbibliografie;det
6、ailed bibliographicdata is available in the Internet at?2004 WILEY-VCH Verlag GmbH&Co.KGaA,WeinheimAll rights reserved(including those of translationinto other languages).No part of this book may bereproduced in any form nor transmitted or trans-lated into machine language without written permis-sio
7、n from the publishers.Registered names,trade-marks,etc.used in this book,even when notspecifically marked as such,are not to be consideredunprotected by law.Printed in the Federal Republic of GermanyPrinted on acid-free and chlorine-free paperCover designSCHULZ Grafikdesign,FugAnheimCompositionKBhn&
8、Weyh,Satz und Medien,FreiburgPrintingbetz-druck GmbH,DarmstadtBookbindingJ.SchFffer GmbH,GrBnstadtISBN3-527-30671-4VVolume 1ISynthesis of Allenes11Synthesis of Allenes by Isomerization Reactions3A.Stephen K.Hashmi1.1Introduction31.2Prototropic Rearrangements and Related Reactions of Alkynes61.2.1Hyd
9、rogen Atoms or Alkyl Groups as Substituents61.2.2Alkenyl or Aryl Groups as Substituents91.2.3Alkinyl Groups as Substituents121.2.4Carbonyl Groups as Substituents131.2.5Halogens as Substituents171.2.6Oxygen as the Substituent191.2.7Nitrogen as the Substituent211.2.8Sulfur as the Substituent231.2.9Sil
10、yl and Stannyl Substituents251.2.10Phosphorus as the Substituent261.2.11Allenes from Prototropic Isomerizations of Alkynes as ReactiveIntermediates271.3Sigmatropic Rearrangements271.3.12,3-Sigmatropic Rearrangements271.3.23,3-Sigmatropic Rearrangements291.4Rearrangements of Other Systems with at Lea
11、st Two p-Bonds331.5Retro-Ene Reactions331.6Electrocyclic Ring Openings341.7Intramolecular Conjugate Additions341.8Complex Reactions and Rearrangements351.9Conclusion36ContentsModern Allene Chemistry.Edited by N.Krause and A.S.K.HashmiCopyright 8 2004 WILEY-VCH Verlag GmbH&Co.KGaA,WeinheimISBN:3-527-
12、30671-4Contents2Metal-Mediated Synthesis of Allenes51Anja Hoffmann-R?der and Norbert Krause2.1Introduction2.2Copper-Mediated Synthesis of Allenes522.2.1Substitution Reactions522.2.2Addition Reactions612.3Lithium-,Magnesium-and Zinc-Mediated Synthesis of Allenes702.4Aluminum-and Indium-Mediated Synth
13、esis of Allenes752.5Titanium-and Samarium-Mediated Synthesis of Allenes792.6Conclusion873Transition Metal-Catalyzed Synthesis of Allenes93Masamichi Ogasawara and Tamio Hayashi3.1Introduction933.2Formation of Allenes by Substitution Reactions933.2.1SN2 Substitution of Propargyl Compounds933.2.2SN2 Su
14、bstitution of 2-Halo-1,3-Butadienes and RelatedCompounds1123.2.3SN2 Substitution of Pent-2-en-4-ynyl Acetates1173.2.4SE2 Substitution of PropargylMetal Species1183.3Formation of Allenes by Addition Reactions1213.3.11,4-Addition to Conjugated Enynes and Related Reactions1213.3.21,6-Conjugate Addition
15、 to Enynylcarbonyl Compounds1283.4Formation of Allenes by Elimination Reactions1293.5Other Miscellaneous Methods of Preparing Allenes1313.6Formation of 1,2,3-Butatrienes1333.7Conclusion1364Enantioselective Synthesis of Allenes141Hiroaki Ohno,Yasuo Nagaoka,and Kiyoshi Tomioka4.1Introduction1414.2Chir
16、ality Transfer from Propargylic Compounds1414.2.1Organocopper-Mediated Alkylation of Propargyl AlcoholDerivatives1414.2.2Copper-Mediated Halogenation of Propargyl Alcohol Derivatives1484.2.3Rearrangement of Propargyl Alcohol Derivatives1524.2.4Palladium(0)-Catalyzed Reactions of Propargyl Alcohol De
17、rivatives1554.2.5SN2 Reduction of Propargyl Alcohol Derivatives1584.2.6Ring-Opening Reactions of Propargyl Epoxides and RelatedCompounds1604.2.7Chiral Propargyl or AllenylMetal Reagents163VIContents4.3Elimination Reactions of Chiral Allylic Compounds1654.3.1Chirality Transfer from Allylic Position16
18、54.3.2Elimination Reactions of Allylic Compounds Having a Chiral LeavingGroup1684.4Synthesis of Allenes Using Chiral Reagents1694.4.1Asymmetric DeprotonationProtonation1694.4.2Asymmetric HornerWadsworthEmmons and Related Reactions1714.5Direct Asymmetric Synthesis of Allenes Using an External ChiralC
19、atalyst1714.6Synthesis of Allenes Using Internal Chiral Auxiliaries1754.7Kinetic Resolution1754.8Conclusion177IISpecial Classes of Allenes1835Allenic Hydrocarbons Preparation and Use in Organic Synthesis185Henning Hopf5.1Introduction1855.2Allenic Hydrocarbons from Simple Building Blocks1865.3Prepara
20、tion of Allenic Hydrocarbons1885.3.1General Methods1885.3.2Alkylallenes1905.3.3Vinylallenes1945.3.4Ethynylallenes1975.3.5Conjugated Bisallenes1995.3.6Cyclopropylallenes2025.3.7Arylallenes2045.3.8Allenes Carrying Other Unsaturated Substituents2095.3.9Semicyclic Allenic Hydrocarbons2175.4Allenic Hydro
21、carbons as Reaction Intermediates2185.5Why Allenic Hydrocarbons Are of Interest in Preparative OrganicChemistry2226Cyclic Allenes Up to Seven-Membered Rings243Manfred Christl6.1Introduction2436.2Three-,Four-and Five-Membered Rings2456.3Six-Membered Rings2486.3.1Unsubstituted 1,2-Cyclohexadiene2486.3
22、.2Substituted 1,2-Cyclohexadienes2606.3.3Bridged and Annulated 1,2-Cyclohexadienes2666.3.41,2,4-Cyclohexatriene,3d2-1H-Naphthalene and Their Derivatives2726.3.5Heterocyclic Derivatives of 1,2,4-Cycloheptatriene(162)and3d2-1H-Naphthalene(221)289VIIContents6.3.6Heterocyclic Derivatives of 1,2-Cyclohex
23、adiene(6)2996.4Seven-Membered Rings3246.4.11,2-Cycloheptadiene and Its Simple Derivatives3256.4.21,2,4,6-Cycloheptatetraene and Its Simple Derivatives3326.4.3Annulated and Bridged Derivatives of 1,2-Cycloheptadiene3496.4.4Heterocyclic Derivatives of 1,2-Cycloheptadiene3507Acceptor-Substituted Allene
24、s359Klaus Banert and Jens Lehmann7.1Introduction3597.2Synthesis of Acceptor-Substituted Allenes3607.2.1Methods with Building Up of the Carbon Skeleton of the Allene3607.2.2Prototropic Isomerization of Propargyl Compounds3617.2.32,3-Sigmatropic Rearrangement of Propargyl Compounds3647.2.4Other Rearra
25、ngement Reactions3677.2.5Nucleophilic Substitution of Propargyl Compounds3697.2.6Palladium-Catalyzed Carbonylation of Propargyl Compounds3717.2.71,4-Addition to Enynes3737.2.8Elimination and Cleavage Reactions3737.2.9Introduction of the Acceptor Substituent into the Allene3757.2.10Synthesis from Oth
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