The chemistry of the Morita-Baylis-Hillman reaction
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Word Count
140,250 words, Guess
Page Count
561 pages
Physical Format
Electronic resource
Identifiers
- Internet Archivechemistrymoritab00shim
- Internet Archivechemistryofmorit0000unse
- ISBN-101849732655
- ISBN-101849731292
- ISBN-139781849732659
and 5 more
- ISBN-139781849731294
- OCLC Control Number725827814
- Better World Books9781849731294
- Better World Books9781849732659
- Open LibraryOL27023949M
Classifications
- DDC547/.2
- LCCQD262 .C44 2011
- LCCQD341.A6
Description
Carbon-carbon bond formations and functional group transformations are the most fundamental reactions for the construction of molecular frameworks and are at the forefront of organic chemistry research. The Morita-Baylis-Hillman (MBH) type reactions possess the two most important requirements - atom economy and generation of multi-functional groups. The last decade has seen exponential growth of the MBH reaction and its applications. In fact, it is already one of the most powerful carbon-carbon bond-forming methods widely used in organic synthesis. Since the 1990s, more and more research groups have initiated work on different aspects of the MBH reaction. These have focused on the scope of the substrates, novel catalysts (especially chiral catalysts), reaction mechanisms, and synthetic applications. Consequently, there is now a need for a reference detailing the chemistry of this important reaction. This unique book summarizes the MBH reaction, aza-MBH reaction and asymmetric MBH/aza-MBH reaction including the latest research and mechanistic investigations. It provides a complete overview of MBH-type reactions aimed at synthetic organic chemists of all levels within academia and industry. The chapters cover the; origin and growth of the Morita-Baylis-Hillman reaction; reactant classes and reaction conditions; catalytic mechanisms; achiral and chiral catalytic systems; transformations of functional groups; use of Morita-Baylis-Hillman adducts and derivatives as starting materials to construct compounds with carbocyclic or heterocyclic frameworks, and the applications of the MBH reaction in synthesizing natural products.
Subjects
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