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Pericyclic reaction

About: Pericyclic reaction is a research topic. Over the lifetime, 1557 publications have been published within this topic receiving 48800 citations. The topic is also known as: pericyclic reactions.


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Book
01 Jan 1977
TL;DR: Molecular Orbitals and Frontier Orbitals.
Abstract: Molecular Orbitals and Frontier Orbitals. Ionic Reactions. Thermal Pericyclic Reactions. Radical Reactions. Photochemical Reactions. Exceptions.

2,548 citations

Book
01 Jan 2003
TL;DR: In this article, the authors proposed a photochromism based on pericyclic reactions and cycloaddition reactions involving 4n+2 electrons for the purpose of energy storage.
Abstract: Photophysical, Photochemical and Photokinetic Properties of Photochromic Systems, G. Gauglitz. Photochromism Based on "E-Z" Isomerization of Double Bonds: CIS-trans isomerization of C=C double bonds, J. Saltiel, Y.-P. Sun Azo compounds, H. Rau. Photochromism Based on Pericyclic Reactions: Electrocyclization Reactions: 4n systems based on l,3-electrocyclization, C. Schulz, H. Durr 4n+2 systems based on 1,5-electrocyclization, H. Durr 4n+2 systems - molecules derived from Z-Hexa-1,3,5-Triene/ Cyclohexa- 1,3-Diene, W.H. Laarhoven 4n+2 systems - spiropyrans, R. Guglielmetti 4n+2 systems - fulgides, J. Whittal 4n+2 systems - spirooxazines, N.Y.C. Chu 4n and 4n+2 systems (n>2) based on 1,7- and l,10-electrocyclization, H. Durr. Photochromism Based on Pericyclic Reactions - Cycloaddition Reactions: Cycloaddition reactions involving 4n electrons - (2+2) cycloaddition - photochemical energy storage systems based on reversible valence photoi somerization, G. Jones II Cycloaddition reactions involving 4n electrons - (2+2) cycloaddition - molecules with multiple bonds ingorporated in or linked 10 aromatic systems, J-P. Desvergne, H. Bouas-Laurent Cycloaddition reactions involving 4n electrons - (4+4) cycloaddition reactions between unsaturated conjugated systems, H. Bouas-Laurent, J-P. Desvergne Cycloaddition reactions involving 4n+2 electrons - photochromism based on the reversible reagtion of singlet oxygen with aromatic compounds, H.-D. Brauer, R. Schmidt. Photochromism Based on Tautomerism (Hydrogen Transfer): Tautomerism by hydrogen transfer in salicylates, triazoles and oxazoles, H.E.A. Kramer Tautomerism by hydrogen transfer in anils, aci-nitro and related compounds, E. Hadjoudis. Photochromism Based of Dissociation Processes: Photochromism based on dissociation processes, R. Aldag. Photochromism in Biological Systems: Phytochrome, S.E. Braslavsky Retinal proteins, F. Siebert. Environmental Effects on Organic Photochromic Systems, V.A. Krongauz. The Use of Silver Salts for Photochromic Glasses: The use of silver salts for photochromic glasses, H.J. Hoffmann Applications Spiropyrans and related compounds, R. Guglielmetti Spirooxazines, N.Y.C. Chu Actinometry, G. Gauglitz Photochromic materials and photoresists, K. Ichimura. New Developments Highly Promising for Applications: Photochromism by orientation, J. Michl S Pectral hole - burning, U.P. Wild, A. Renn Bacteriorhodopsin and its functional variants - potential applications in modern optics, N. Hampp, C. Brauchle.

1,351 citations

Book
11 Sep 2006
TL;DR: It is shown that domino reactions initiated by oxidation or reduction or reduction, as well as other mechanisms, can be inhibited by various materials, such as Na6(CO3)(SO4), Na2SO4, Na2CO3, and so on.
Abstract: Introduction Cationic domino reactions Anionic domino reactions Radical domino reactions Pericyclic domino reactions Photochemically induced domino processes Transition metal catalysis Domino reactions initiated by oxidation or reduction Enzymes in domino reactions Multicomponent reactions Special techniques in domino reactions

1,337 citations

Book
01 Jul 2005
TL;DR: In this paper, the authors introduce the structure and models of bonding and structural properties of organic materials, and propose a model of non-covalent binding forces and non-convex binding forces.
Abstract: 1: Introduction to Structure and Models of Bonding 2: Strain and Stability 3: Solutions and Noncovalent Binding Forces 4: Molecular Recognition and Supramolecular Chemistry 5: Acid-Base Chemistry 6: Stereochemistry 7: Energy Surfaces and Kinetic Analyses 8: Experiments Related to Thermodynamics and Kinetics 9: Catalysis 10: Organic Reaction Mechanisms Part 1: Reactions Involving Additions and/or Eliminations 11: Organic Reaction Mechanisms Part II: Substitutions at Aliphatic Centers and Thermal Isomerizations/Rearrangements 12: Organotransition Metal Reaction Mechanisms and Catalysis 13. Organic Polymer and Materials Chemistry 14. Advanced Concepts in Electronic Structure Theory 15: Thermal Pericyclic Reactions 16: Photochemistry 17: Electronic Organic Materials

1,209 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202322
202271
202133
202024
201951
201830