Total Synthesis of Plakortide E and Biomimetic Synthesis of Plakortone B

Nonfiction, Science & Nature, Science, Chemistry, Clinical, Organic
Cover of the book Total Synthesis of Plakortide E and Biomimetic Synthesis of Plakortone B by Xiao-Yu Sun, Springer Berlin Heidelberg
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Xiao-Yu Sun ISBN: 9783642271953
Publisher: Springer Berlin Heidelberg Publication: January 15, 2012
Imprint: Springer Language: English
Author: Xiao-Yu Sun
ISBN: 9783642271953
Publisher: Springer Berlin Heidelberg
Publication: January 15, 2012
Imprint: Springer
Language: English

In his thesis, Xiaoyu Sun conducts the first total synthesis of all possible stereoisomers of plakortide E and also confirms the absolute configuration of natural plakortide E. Xiaoyu Sun subsequently converts Plakortide E methyl ester to plakortone B in a biomimetic conversion. Construction and functionalization of cyclic peroxides are notoriously difficult due to the very low O-O bond dissociation energy. Plaktoride E is isolated from the Jamaican marine sponge platorits halichondrioides and contains a five-membered peroxide ring, with oxygen atoms linked to tertiary C4 and C6 centers. The methodology used for synthesizing highly substituted cyclic peroxides is novel and useful, and not only extends the field of Pd-catalyzed reactions, but also provides a convenient synthetic approach for the preparation of the 1,2-dioxolanes series. Plakortide E and plakortone B are bioactive, which means that the synthetic studies on them and their analogs are pivotal in drug discovery.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

In his thesis, Xiaoyu Sun conducts the first total synthesis of all possible stereoisomers of plakortide E and also confirms the absolute configuration of natural plakortide E. Xiaoyu Sun subsequently converts Plakortide E methyl ester to plakortone B in a biomimetic conversion. Construction and functionalization of cyclic peroxides are notoriously difficult due to the very low O-O bond dissociation energy. Plaktoride E is isolated from the Jamaican marine sponge platorits halichondrioides and contains a five-membered peroxide ring, with oxygen atoms linked to tertiary C4 and C6 centers. The methodology used for synthesizing highly substituted cyclic peroxides is novel and useful, and not only extends the field of Pd-catalyzed reactions, but also provides a convenient synthetic approach for the preparation of the 1,2-dioxolanes series. Plakortide E and plakortone B are bioactive, which means that the synthetic studies on them and their analogs are pivotal in drug discovery.

More books from Springer Berlin Heidelberg

Cover of the book Petroleum Formation and Occurrence by Xiao-Yu Sun
Cover of the book Specific Intermolecular Interactions of Organic Compounds by Xiao-Yu Sun
Cover of the book Omnisophie-Trilogie by Xiao-Yu Sun
Cover of the book Transactions on Large-Scale Data- and Knowledge-Centered Systems XLI by Xiao-Yu Sun
Cover of the book Arbeitsbuch Algebra by Xiao-Yu Sun
Cover of the book The Role of Oxidative Stress in Neuronal Death by Xiao-Yu Sun
Cover of the book World in Transition: Ways Towards Global Environmental Solutions by Xiao-Yu Sun
Cover of the book Resilience Assessment and Evaluation of Computing Systems by Xiao-Yu Sun
Cover of the book Proceedings of the 2nd International Conference on Green Communications and Networks 2012 (GCN 2012): Volume 3 by Xiao-Yu Sun
Cover of the book On the Structure of the Human Striate Area by Xiao-Yu Sun
Cover of the book Atmospheric Nuclear Tests by Xiao-Yu Sun
Cover of the book The End of Desertification? by Xiao-Yu Sun
Cover of the book Nausea and Vomiting: Mechanisms and Treatment by Xiao-Yu Sun
Cover of the book Advances in Cryptology – CRYPTO 2016 by Xiao-Yu Sun
Cover of the book Didaktik der Bruchrechnung by Xiao-Yu Sun
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy