This book examines the first ten years of this rapidly-expanding field, providing the reader with the knowledge to develop new syntheses in keeping with the principles of Green Chemistry.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Chao-Jun Li received his B.S. at Zhengzhou University (1983), M.S. at the Chinese Academy of Sciences in Beijing (1988) and Ph.D. at McGill University (1992, with T. H. Chan and D. N. Harpp). After an NSERC Postdoctoral research term with B. M. Trost at Stanford University, he became Assistant Professor (1994), Associate Professor (1998), and Full Professor (2000-2003) at Tulane University. In 2003, he became a Canada Research Chair (Tier I) in Organic/Green Chemistry and a Professor of Chemistry at McGill University in Canada. Currently, he serves as the Co-Chair (with Bernard West) of the Canadian Green Chemistry and Engineering Network. His current research efforts are focused on developing innovative and fundamentally new organic reactions that will defy conventional reactivities and have high synthetic efficiency.
Full Professor at Warsaw University of Technology, Poland, former Chair of Process Intensification at Delft University of Technology, the Netherlands, and former Director of TU Delft Process Technology Institute. With more than 40 years of industrial and academic research experience he is author of numerous scientific publications on process intensification, chemical reaction engineering and industrial catalysis. He is principal author and co-editor of the world's first book on Process Intensification. Prof. Stankiewicz is Editor-in-Chief of Chemical and Process Engineering: New Frontiers (Polish Academy of Sciences) and Series Editor of the Green Chemistry Books Series (Royal Society of Chemistry). He was founder and first Chairman of the Working Party on Process Intensification at the European Federation of Chemical Engineering. He was also founder and Chairman the Board of the European Process Intensification Centre (EUROPIC). Current research interests of Prof. Stankiewicz focus on intensification of catalytic processes using renewable electricity-based energy fields. The research in that area has brought him prestigious Advanced Investigator Grant from the European Research Council.
Peter Rudolf Seidl - Professor, Graduate Program on Technology of Chemical and Biochemical Processes, EQ/UFRJ (TPQB/EQ/UFRJ), and responsible for the establishment of the Brazilian Green Chemical School (EBQV). Thesis advisor and project coordinator in physical organic chemistry applied to chemical process areas such as petroleum, pharmaceuticals, mineral technology, etc., publishing widely in these areas and holding an international patent on the use of cashew wastes as a raw material. Former President of the Brazilian Chemical Association (ABQ) and active in the organization of meetings and workshops, such as the 1st International Conference on Chemistry of the Amazon (held shortly after Rio 92) and, more recently, the 1st Workshop on Asphaltenes Characterization and Properties held in 2009 and Biorefineries 2010 Recent Advances and New Challenges, held last November.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardback. Etat : New. The C-C bond is a basic building block in chemistry, and its formation is often the first step towards building more complex molecules. The direct generation of C-C bonds from C-H by cross-dehydrogenative-coupling (CDC) reactions in 2003 has presented a paradigm shift towards more efficient synthetic design, and over the last decade this has become a hot topic in Green Chemistry.This edited book presents a summary of the latest developments in the formation of C-C bonds direct from two different C-H bonds via oxidative dehydrogenative couplings. The editor, (CJ Li, McGill University) has pioneered various copper and organo-catalyzed CDC reactions within his Green Chemistry and Organic Synthesis group, and has brought together expertise from across the world to present the various CDC reactions being used today. Practicing synthetic chemists seeking to improve the efficiency of their reactions will benefit from this approach, while students and those wishing to adopt these reactions will gain a thorough understanding of the field. The conclusions presented at the end of the book will inspire all readers to the future opportunities in the field. N° de réf. du vendeur LU-9781849737975
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Hardback. Etat : New. The C-C bond is a basic building block in chemistry, and its formation is often the first step towards building more complex molecules. The direct generation of C-C bonds from C-H by cross-dehydrogenative-coupling (CDC) reactions in 2003 has presented a paradigm shift towards more efficient synthetic design, and over the last decade this has become a hot topic in Green Chemistry.This edited book presents a summary of the latest developments in the formation of C-C bonds direct from two different C-H bonds via oxidative dehydrogenative couplings. The editor, (CJ Li, McGill University) has pioneered various copper and organo-catalyzed CDC reactions within his Green Chemistry and Organic Synthesis group, and has brought together expertise from across the world to present the various CDC reactions being used today. Practicing synthetic chemists seeking to improve the efficiency of their reactions will benefit from this approach, while students and those wishing to adopt these reactions will gain a thorough understanding of the field. The conclusions presented at the end of the book will inspire all readers to the future opportunities in the field. N° de réf. du vendeur LU-9781849737975
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