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Tetrahedron Organic Chemistry Series. Solid-supported combinatorial and parallel synthesis of small-molecular-weight compound libraries / Obrecht, Daniel
Titre de série : Tetrahedron Organic Chemistry Series Titre : Solid-supported combinatorial and parallel synthesis of small-molecular-weight compound libraries Type de document : texte imprimé Auteurs : Obrecht, Daniel, Auteur ; Vilallgordo, José, M., Auteur Editeur : Amsterdam : Elsevier Année de publication : 1998 Collection : Tetrahedron Organic Chemistry Series, ISSN 1460-1567 num. 17 Importance : 338 p. ISBN/ISSN/EAN : 978-0-08-043257-1 Note générale : For organic chemists, medicinal chemists, pharmaceutical company researchers, graduate students, university and industrial researchers. Langues : Anglais (eng) Catégories : Catalyse Tags : CATALYSIS CHEMISTRY ORGANIC-NOMENCLATURE Index. décimale : B-E Résumé : The words "Combinatorial Chemistry" have different meanings to different people, ranging from split and mix strategies to parallel synthesis using robots, and embracing the whole range of preparative chemistry from organic molecules, to catalyst ligands, and even inorganic solids. All of these activities have in common an attempt to expand the diversity of structure available to the chemist as well as the access to this diversity, permitting the discovery of new and valuable biological acid material properties. In this outstanding survey of combinatorial organic chemistry, the authors, Obrecht who has established a new combinatorial chemistry company called Polyphor, and Villalgardo have brought together the literature, including that from 1998, and have concisely analysed the applications and achievements of this new field. This work will be of value to all chemists engaged in preparative work, both in industry and academe. Note de contenu : "* Introduction, Basic Concepts and Strategies
* Linear Assembly Strategies
* Library Synthesis in Solution Using Liquid-Liquid and Liquid-Solid Extractions and Polymer-Bound Reagents
* Convergent Assembly Strategies on Solid Supports.Cote : B-E101 Num_Inv : 3598 Localisation : LCC (SdS) Tetrahedron Organic Chemistry Series. Solid-supported combinatorial and parallel synthesis of small-molecular-weight compound libraries [texte imprimé] / Obrecht, Daniel, Auteur ; Vilallgordo, José, M., Auteur . - Amsterdam : Elsevier, 1998 . - 338 p.. - (Tetrahedron Organic Chemistry Series, ISSN 1460-1567; 17) .
ISBN : 978-0-08-043257-1
For organic chemists, medicinal chemists, pharmaceutical company researchers, graduate students, university and industrial researchers.
Langues : Anglais (eng)
Catégories : Catalyse Tags : CATALYSIS CHEMISTRY ORGANIC-NOMENCLATURE Index. décimale : B-E Résumé : The words "Combinatorial Chemistry" have different meanings to different people, ranging from split and mix strategies to parallel synthesis using robots, and embracing the whole range of preparative chemistry from organic molecules, to catalyst ligands, and even inorganic solids. All of these activities have in common an attempt to expand the diversity of structure available to the chemist as well as the access to this diversity, permitting the discovery of new and valuable biological acid material properties. In this outstanding survey of combinatorial organic chemistry, the authors, Obrecht who has established a new combinatorial chemistry company called Polyphor, and Villalgardo have brought together the literature, including that from 1998, and have concisely analysed the applications and achievements of this new field. This work will be of value to all chemists engaged in preparative work, both in industry and academe. Note de contenu : "* Introduction, Basic Concepts and Strategies
* Linear Assembly Strategies
* Library Synthesis in Solution Using Liquid-Liquid and Liquid-Solid Extractions and Polymer-Bound Reagents
* Convergent Assembly Strategies on Solid Supports.Cote : B-E101 Num_Inv : 3598 Localisation : LCC (SdS) Exemplaires(1)
Code-barres Cote Support Localisation Section Disponibilité 3598 B-E101 Texte imprimé Bibliothèque Livre Disponible