Titre : |
Organic redox chemistry : Chemical, photochemical and electrochemical syntheses |
Type de document : |
texte imprimé |
Auteurs : |
Yoshida, Jun-Ichi, Auteur ; Patureau, Frédéric W., Auteur |
Editeur : |
Wiley-VCH Verlag |
Année de publication : |
2022 |
Importance : |
xiv, 231 p. |
ISBN/ISSN/EAN : |
978-3-527-34487-1 |
Note générale : |
Redox chemistry has emerged as a crucial research topic in synthetic method development. In Organic Redox Chemistry: Chemical, Photochemical and Electrochemical Syntheses, some key researchers in this field, including editors Dr. Frédéric W. Patureau and the late Dr. Jun-Ichi Yoshida, deliver an insightful exploration of this rapidly developing topic. |
Langues : |
Anglais (eng) |
Catégories : |
Chimie organique
|
Tags : |
ORGANIC CHEMISTRY PHOTOCHEMISTRY |
Index. décimale : |
B-C |
Résumé : |
This book highlights electron transfer processes in synthesis by using different techniques to initiate them, allowing for a multi-directional perspective in organic redox chemistry. Covering a wide array of the important and recent developments in the field, Organic Redox Chemistry will earn a place in the libraries of chemists seeking a one-stop resource that compares chemical, photochemical, and electrochemical methods in organic synthesis. |
Note de contenu : |
"* Basics of Chemical Redox Reactions
* Basics of Photochemical Redox Reactions
* Basics of Electrochemical Redox Reactions
* Chemical Oxidative C-C Bond Formation
* Photochemical Oxidative C-C Bond Formation
* Electrochemical
* Chemical Oxidative Functionalization
* Photochemical Oxidative Functionalization
* Electrochemical Oxidative Functionalization
* Chemical Reductive Transformations
* Photochemical Reductive Transformations
* Electrochemical Reductive Transformatoins
* Chemical Paired Transformations
* Photochemical Paired Transformations
* Electrochemical Paired Transformations
* Chemical Redox Mediated Polymer Synthesis
* Photochemical Redox Mediated Polymer Synthesis
* Electrochemical Redox Mediated Polymer Synthesis". |
Cote : |
B-C131 |
Num_Inv : |
941 |
Localisation : |
LCC (SdS) |
Organic redox chemistry : Chemical, photochemical and electrochemical syntheses [texte imprimé] / Yoshida, Jun-Ichi, Auteur ; Patureau, Frédéric W., Auteur . - Wiley-VCH Verlag, 2022 . - xiv, 231 p. ISBN : 978-3-527-34487-1 Redox chemistry has emerged as a crucial research topic in synthetic method development. In Organic Redox Chemistry: Chemical, Photochemical and Electrochemical Syntheses, some key researchers in this field, including editors Dr. Frédéric W. Patureau and the late Dr. Jun-Ichi Yoshida, deliver an insightful exploration of this rapidly developing topic. Langues : Anglais ( eng)
Catégories : |
Chimie organique
|
Tags : |
ORGANIC CHEMISTRY PHOTOCHEMISTRY |
Index. décimale : |
B-C |
Résumé : |
This book highlights electron transfer processes in synthesis by using different techniques to initiate them, allowing for a multi-directional perspective in organic redox chemistry. Covering a wide array of the important and recent developments in the field, Organic Redox Chemistry will earn a place in the libraries of chemists seeking a one-stop resource that compares chemical, photochemical, and electrochemical methods in organic synthesis. |
Note de contenu : |
"* Basics of Chemical Redox Reactions
* Basics of Photochemical Redox Reactions
* Basics of Electrochemical Redox Reactions
* Chemical Oxidative C-C Bond Formation
* Photochemical Oxidative C-C Bond Formation
* Electrochemical
* Chemical Oxidative Functionalization
* Photochemical Oxidative Functionalization
* Electrochemical Oxidative Functionalization
* Chemical Reductive Transformations
* Photochemical Reductive Transformations
* Electrochemical Reductive Transformatoins
* Chemical Paired Transformations
* Photochemical Paired Transformations
* Electrochemical Paired Transformations
* Chemical Redox Mediated Polymer Synthesis
* Photochemical Redox Mediated Polymer Synthesis
* Electrochemical Redox Mediated Polymer Synthesis". |
Cote : |
B-C131 |
Num_Inv : |
941 |
Localisation : |
LCC (SdS) |
| |