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Total synthesis of (±)-Maoecrystal V

Author: Jianxian Gong
Publisher: Heidelberg ; New York : Springer, [2014]
Series: Springer theses, 8790.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
In this thesis, the author describes the total synthesis of natural product Maoecrystal V in detail. In the first part of the thesis, the author introduces the research background and reviews the research progress in total synthesis of Maoecrystal V. In the second part, the author develops a novel and concise approach for the stereoselective construction of the tetracyclic model system of Maoecrystal V. The model  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Printed edition:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Jianxian Gong
ISBN: 9783642543043 3642543049 3642543030 9783642543036
OCLC Number: 872577832
Notes: "Doctoral thesis accepted by Peking Universtiy, Beijing, China."
Description: 1 online resource : illustrations (some color).
Contents: Research Background for Natural Product Maoecrystal V and Its Family --
The Model Study of Natural Product Maoecrystal V --
The total synthesis study of Maoecrystal V --
Summary.
Series Title: Springer theses, 8790.
Responsibility: Jianxian Gong.
More information:

Abstract:

In this thesis, the author describes the total synthesis of natural product Maoecrystal V in detail. In the first part of the thesis, the author introduces the research background and reviews the research progress in total synthesis of Maoecrystal V. In the second part, the author develops a novel and concise approach for the stereoselective construction of the tetracyclic model system of Maoecrystal V. The model system is accomplished in 8 steps with 20% yield. In the third part, the author describes the first successful total synthesis of Maoecrystal V and investigates four strategies for constructing the key tetrahydrofuran oxa-bridge skeleton. The total synthesis starts from a known compound and is accomplished in 17 steps with 1.2% yield. The successful total synthesis of Maoecrystal V will contribute to the development of efficient synthetic strategies for natural products and other compounds with complex structures.

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