Electrocyclic Reaction
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11 Concerted Pericyclic Reactions
11 Concerted Pericyclic Reactions Introduction There are many reactions in organic chemistry that give no evidence of involving intermediates when subjected to the usual probes for studying reaction mechanisms. Highly polar transition states do not seem to be involved either,since the rates of the reactions are often insensitive to solvent polarity. Efforts to detect free-radical intermedi- ates in these reactions by spectroscopic or chemical means have not been successful,and the reaction rates are neither increased by initiators nor decreased by inhibitors of free- radical reactions. This absence of evidence of intermediates leads to the conclusion that the reactions are single-step processes in which bond making and bond breaking both contribute to the structure at the transition state,although not necessarily to the same degree. Such processes are called concerted reactions. There are numerous examples of both unimolecular and bimolecular concerted reactions. An important group of concerted reactions are the concerted pericyclic reactions.1 A pericyclic reaction is characterized as a change in bonding relationship that takes place as a continuous concerted reorganization of electrons. The word ``concerted'' speci®es that there is a single transition state and that there are no intermediates in the process. To maintain continuous electron ¯ow,pericyclic reactions must occur through cyclic transi- tion states. Furthermore,the cyclic transition state must correspond to an arrangement of the participating orbitals that can maintain a bonding interaction between the reacting atoms throughout the course of the reaction. We shall see shortly that these requirements make pericyclic reaction highly predictable in terms of such features as relative reactivity, stereospeci®city,and regioselectivity. -
Pericyclic Reactions 2012-2013
DAMIETTA UNIVERSITY CHEM-405: PERICYCLIC REACTIONS LECTURE 1 Dr Ali El-Agamey 1 LEARNING OUTCOMES LECTURES 1-2 Understand the meaning of phase, regioselectivity, regiospecificity, stereoselectivity, stereospecificity. various types of pericyclic reactions. Realize common features among pericyclic reactions. Identify molecular orbital diagram of various systems. 2 1 Lecture 1-2: -Phase, Electron wave functions, Molecular orbitals, Regioselectivity, Regiospecificity, Stereoselectivity, Stereospecificity. - Types of Pericyclic Reactions, Various approaches to explain the pericyclic reactions, The Frontier Orbital Approach, Common Features among Pericyclic Reactions, Molecular Orbital Description of Various Systems. Lecture 3-4: -Electrocyclic reactions (Principle of microscopic reversibility, conrotatory and disrotatory motions; Torquoselectivity; Forbidden electrocyclic reactions). - Electrocyclic reactions of cations and anions (Pentadienyl cation; Pentadienyl anion; Allyl cations; oxyallyl cations; Allyl anion; Aziridines; 1,3-Dipoles). -Woodward-Hoffmann rules for electrocyclic reactions. Lecture 5: -Cycloaddition reactions (Energy consequences of the interaction between orbitals; [4 + 2] cycloaddition; [2 + 2] cycloaddition; suprafacial addition; antrafacial addition). -Factors affecting the rate of the Diels-Alder reaction (The diene; Electron-demand in Diels-Alder reactions; Lewis-acid catalysis). 3 Lecture 6-7: -Recognizing a Diels–Alder Product. -Diels-Alder Reaction (Regioselectivity; Stereospecificity; Stereoselectivity: -
Metal-Mediated Vinylogous Nazarov Cyclization Reaction
University of Windsor Scholarship at UWindsor Electronic Theses and Dissertations Theses, Dissertations, and Major Papers 9-13-2019 Metal-Mediated Vinylogous Nazarov Cyclization Reaction Somaiah Khalid Almubayedh University of Windsor Follow this and additional works at: https://scholar.uwindsor.ca/etd Recommended Citation Almubayedh, Somaiah Khalid, "Metal-Mediated Vinylogous Nazarov Cyclization Reaction" (2019). Electronic Theses and Dissertations. 7798. https://scholar.uwindsor.ca/etd/7798 This online database contains the full-text of PhD dissertations and Masters’ theses of University of Windsor students from 1954 forward. These documents are made available for personal study and research purposes only, in accordance with the Canadian Copyright Act and the Creative Commons license—CC BY-NC-ND (Attribution, Non-Commercial, No Derivative Works). Under this license, works must always be attributed to the copyright holder (original author), cannot be used for any commercial purposes, and may not be altered. Any other use would require the permission of the copyright holder. Students may inquire about withdrawing their dissertation and/or thesis from this database. For additional inquiries, please contact the repository administrator via email ([email protected]) or by telephone at 519-253-3000ext. 3208. METAL-MEDIATED VINYLOGOUS NAZAROV CYCLIZATION REACTION By Somaiah Khalid Almubayedh A Dissertation Submitted to the Faculty of Graduate Studies through the Department of Chemistry and Biochemistry in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy at the University of Windsor Windsor, Ontario, Canada © 2019 Somaiah K. Almubayedh Metal-Mediated Vinylogous Nazarov Cyclization Reaction by Somaiah Khalid Almubayedh APPROVED BY: _____________________________ R. Dembinski, External Examiner Oakland University _____________________________ I. -
Pericyclic Reactions
A Brief Description on Pericyclic Reactions (Student reference) Pericyclic Reactions Peri= periphery, around Cyclic= following a circular path or forming a cycle Definition: Pericyclic reaction is defined as a thermal or photochemical induced reaction involving a stereospecific, (rather highly stereoselective) concerted cyclic shift of the electrons. The reactant is converted to a product typically by a cyclic conjugated transition state (T.S) either thermally or photochemically. The first key term concerted implies to no intermediate since bond breaking and bond making takes place simultaneously. The second key point cyclic shift of electrons signifies a kind of reaction that occurs around the periphery of a molecule following a typical involvement of π-orbital via a circular pathway. It rules out either homolytic/heterolytic cleavage or radical/ionic pathway. There are three major classes of pericyclic reactions. Besides, Group transfer reaction is accounted as another class of pericyclic reactions. Characteristics features of Pericyclic reactions 1. A concerted pathway via a single cyclic conjugated T.S where lack of evidence in isolation of intermediate like free radical, carbocation etc. rather the bond breaking and bond making takes place synchronously. 2. Cyclic shift of electrons as a result of in general participation of p/π-orbital with some extent to σ-bond: A reorganization of electron pairwise within the close loop of interacting orbitals (around cyclic). 3. Usually unaffected by acids or bases, the change of solvent polarity, catalyst (exception in Diels-Alder cycloaddition reaction accelerated by Lewis acid catalyst) and radical initiator or change in structural motif of the molecule. 4. No nucleophilic or electrophilic reagents are required. -
Réactions De Cyclisation En Cascade : Un Nouvel Accès À Des Structures Polycycliques Exotiques [4.6.4.6]Fenestradiènes Versus Cyclooctatriènes
THÈSE présentée pour obtenir le grade de DOCTEUR DE L’UNIVERSITÉ LOUIS PASTEUR STRASBOURG I Discipline : Chimie Organique par Catherine HULOT Réactions de cyclisation en cascade : un nouvel accès à des structures polycycliques exotiques [4.6.4.6]fenestradiènes versus cyclooctatriènes Soutenue publiquement le 5 décembre 2008 devant la commission d’examen : Pr. Janick ARDISSON (Université Paris Descartes) Rapporteur externe Pr. Françoise COLOBERT (ECPM Strasbourg) Rapporteur interne Pr. Armin de MEIJERE (Georg-August-Universität Göttingen) Rapporteur externe Pr. Max MALACRIA (Université Paris VI) Examinateur externe Dr. Gaëlle BLOND (Université Strasbourg I) Membre invité Dr. Jean SUFFERT (Université Strasbourg I) Directeur de thèse Laboratoire de Pharmacochimie de la Communication Cellulaire (UMR 7175, LC1) THÈSE présentée pour obtenir le grade de DOCTEUR DE L’UNIVERSITÉ LOUIS PASTEUR STRASBOURG I Discipline : Chimie Organique par Catherine HULOT Réactions de cyclisation en cascade : un nouvel accès à des structures polycycliques exotiques [4.6.4.6]fenestradiènes versus cyclooctatriènes Soutenue publiquement le 5 décembre 2008 devant la commission d’examen : Pr. Janick ARDISSON (Université Paris Descartes) Rapporteur externe Pr. Françoise COLOBERT (ECPM Strasbourg) Rapporteur interne Pr. Armin de MEIJERE (Georg-August-Universität Göttingen) Rapporteur externe Pr. Max MALACRIA (Université Paris VI) Examinateur externe Dr. Gaëlle BLOND (Université Strasbourg I) Membre invité Dr. Jean SUFFERT (Université Strasbourg I) Directeur de thèse Laboratoire de Pharmacochimie de la Communication Cellulaire (UMR 7175, LC1) À Guillaume, À mes parents, À mon frère, À ma sœur. Remerciements Remerciements Je tiens tout d’abord à remercier le Dr Jean Suffert de m’avoir accueillie dans son laboratoire pour ces trois années de thèse, et de m’avoir guidée tout au long de ce travail. -
Exercising Lewis Acid Catalysis for Donor-Acceptor Cyclopropane Ring-Opening Annulations, a Basis for New Reactio
STRESS RELIEF: EXERCISING LEWIS ACID CATALYSIS FOR DONOR-ACCEPTOR CYCLOPROPANE RING-OPENING ANNULATIONS, A BASIS FOR NEW REACTION METHODOLOGIES A Dissertation Presented to The Academic Faculty by Marchello Alfonzo Cavitt In Partial Fulfillment of the Requirements for the Degree Doctor of Philosophy in the School of Chemistry and Biochemistry Georgia Institute of Technology December 2015 Copyright© 2015 by Marchello Cavitt STRESS RELIEF: EXERCISING LEWIS ACID CATALYSIS FOR DONOR-ACCEPTOR CYCLOPROPANE RING-OPENING ANNULATIONS, A BASIS FOR NEW REACTION METHODOLOGIES Approved by: Dr. Stefan France, Advisor Dr. Christoph Fahrni School of Chemistry and Biochemistry School of Chemistry and Biochemistry Georgia Institute of Technology Georgia Institute of Technology Dr. Charles Liotta Dr. Christopher Jones School of Chemistry and Biochemistry School of Chemical Engineering Georgia Institute of Technology Georgia Institute of Technology Dr. Gary Schuster Dr. Leslie Gelbaum School of Chemistry and Biochemistry School of Chemistry and Biochemistry Georgia Institute of Technology Georgia Institute of Technology Date Approved: November 5, 2015 This dissertation is dedicated in loving memory to my great grandmother, Thelma Cavitt, grandmother, Mary Cavitt, and great aunt, Marie McPherson, who reared me in the absence of my parents. Despite their hardships and economic challenges, they endured and remained diligent in instilling the importance of education, perseverance, and integrity in me. For their love, support, and sacrifices made on behalf of my sisters and me, I will forever be grateful. To add to that illustrious cadre of women in this dedication, I offer my sincere gratitude to my best friends, whom I have known for ten years---Daniel Jackson, M.D.