
CO2 as a Building Block in Organic Synthesis
Shoubhik Das(Editor)
Wiley-VCH (Publisher)
1st Edition
Published on 16. December 2020
Book
Hardback
X, 454 pages
978-3-527-34613-4 (ISBN)
Article exhausted; check different version
Description
This book presents the most important reactions which use CO2 as an effective building block in organic synthesis. Reactions like methylation reactions, CH bond functionalization, carboxylation and many more are included and make this book an indispensable source of information.
More details
Edition
1. Auflage
Language
English
Place of publication
Berlin
Germany
Target group
Professional and scholarly
Illustrations
462
358 s/w Abbildungen, 99 farbige Abbildungen, 5 s/w Tabellen
Dimensions
Height: 24.4 cm
Width: 17 cm
Thickness: 2.5 cm
Weight
1502 gr
ISBN-13
978-3-527-34613-4 (9783527346134)
Schweitzer Classification
Other editions
Additional editions

Shoubhik Das
CO2 as a Building Block in Organic Synthesis
E-Book
09/2020
1st Edition
Wiley-VCH
€142.99
Available for download

Shoubhik Das
CO2 as a Building Block in Organic Synthesis
E-Book
08/2020
1st Edition
Wiley-VCH
€142.99
Available for download
Person
Dr. Shoubhik Das is Professor at the University of Antwerp, Belgium. He has studied in India and finished his MSc from IIT Kharagpur in 2006. Subsequently, he moved to UK to join GlaxoSmithKline. In 2008, he started his PhD under the supervision of Prof. Matthias Beller at Leibniz Institut für Katalyse, Germany. In 2011, he finished his PhD and joined the research group of Prof. Matthew J. Gaunt as a post-doctoral research associate at University of Cambridge. In 2013, Dr. Das moved to EPFL, Switzerland and joined the group of Prof. Paul J. Dyson as a scientist. From 2015-2019 he was an inpedendant researcher at the University in Goettingen, Germany.
Content
Photochemical and Substrate Driven CO2 Conversion
C-H Carboxylations with CO2
Transition metal-catalyzed C-H carboxylation
Fixation of CO2 in organic molecules with heterogeneous catalysts
CO2 Fixation into Organic Molecules via Carbon-heteroatom Bond Formation
Carbonyl-Ene Reactions of Alkenes with Carbon Dioxide
Recent Advances in Electrochemical Carboxylation of Organic Compounds for CO2 Valorisation
Photocatalysis as a powerful tool for the utilization of CO2 in organic synthesis
Direct carboxylation of alkenes and alkynes
Homogeneous Iron Catalysts for the Synthesis of Useful Molecules from CO2
NHC-Catalysed CO2 fixations in organic synthesis
Silver-Catalyzed CO2 Fixation
C-H Carboxylations with CO2
Transition metal-catalyzed C-H carboxylation
Fixation of CO2 in organic molecules with heterogeneous catalysts
CO2 Fixation into Organic Molecules via Carbon-heteroatom Bond Formation
Carbonyl-Ene Reactions of Alkenes with Carbon Dioxide
Recent Advances in Electrochemical Carboxylation of Organic Compounds for CO2 Valorisation
Photocatalysis as a powerful tool for the utilization of CO2 in organic synthesis
Direct carboxylation of alkenes and alkynes
Homogeneous Iron Catalysts for the Synthesis of Useful Molecules from CO2
NHC-Catalysed CO2 fixations in organic synthesis
Silver-Catalyzed CO2 Fixation