Lawesson's reagent in heterocycle synthesis / Navjeet Kaur.
2022
QD400.5.S95
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Title
Lawesson's reagent in heterocycle synthesis / Navjeet Kaur.
Author
ISBN
9789811646553 (electronic bk.)
9811646554 (electronic bk.)
9811646546
9789811646546
9811646554 (electronic bk.)
9811646546
9789811646546
Publication Details
Singapore : Springer, [2022]
Language
English
Description
1 online resource
Item Number
10.1007/978-981-16-4655-3 doi
Call Number
QD400.5.S95
Dewey Decimal Classification
547/.59
Summary
This book focuses on the new and old methods for the synthesis of various heterocycles using Lawesson's reagent. The book covers an important and rapidly growing branch of heterocyclic chemistry and can serve as a guide to those who are completing their education and are about to enter the job market. Students will be able to find all Lawesson's reagent-assisted protocols for the synthesis of heterocycles in one place. This feature of the book provides an important benefit, because sometimes users want to see all the possibilities and relevant information for making a particular compound using one particular reagent. The purpose of this valuable resource is to provide the knowledge not only to students but also to pharmacologists, biochemists, organic and medicinal chemists, researchers, and academic professionals for easy access to synthetic protocols for different heterocycles using Lawesson's reagent. The book will be greatly helpful for everyone involved in the field and can pave the way for better understanding and quantification of heterocycle synthesis.
Bibliography, etc. Note
Includes bibliographical references.
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Access limited to authorized users.
Source of Description
Online resource; title from PDF title page (SpringerLink, viewed September 22, 2021).
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Table of Contents
1. Five-membered N-heterocycle
2. Thiazole synthesis
3. Thiazole synthesis by thionation of C=O to C=S
4. Thiadiazole synthesis
5. Five-membered S-heterocycle synthesis
6. S-Heterocycle synthesis
7. O- and N-Heterocycles synthesis
8. Phosphorus pentasulfide in heterocycle synthesis.
2. Thiazole synthesis
3. Thiazole synthesis by thionation of C=O to C=S
4. Thiadiazole synthesis
5. Five-membered S-heterocycle synthesis
6. S-Heterocycle synthesis
7. O- and N-Heterocycles synthesis
8. Phosphorus pentasulfide in heterocycle synthesis.