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The Double [3+2] Photocycloaddition Reaction (Hardcover, 2011): Jason A. Woolford The Double [3+2] Photocycloaddition Reaction (Hardcover, 2011)
Jason A. Woolford
R2,877 Discovery Miles 28 770 Ships in 10 - 15 working days

Jason Woolford's thesis describes for the first time, a double [3+2] photocycloaddition of alkenes onto aromatic rings. Modern synthetic chemistry relies on the ability of researchers to uncover new and more efficient ways of creating highly complex structures. This work describes a novel, environmentally friendly photochemical step that converts in one pot, trivial starting materials into otherwise difficult to construct fenstrane frameworks. The rigid cores of these frameworks have significant potential in drug design. Moreover, the novelty of this work overtakes many other methods for the creation of chiral centres. No less than seven chiral centres are created in the photochemical step together with the formation of four carbon-carbon bonds and multifused rings. Jason's innovative work has been the subject of several publications in peer-reviewed journals.

The Double [3+2] Photocycloaddition Reaction (Paperback, 2011 ed.): Jason A. Woolford The Double [3+2] Photocycloaddition Reaction (Paperback, 2011 ed.)
Jason A. Woolford
R2,873 Discovery Miles 28 730 Ships in 10 - 15 working days

Jason Woolford's thesis describes for the first time, a double 3]2] photocycloaddition of alkenes onto aromatic rings. Modern synthetic chemistry relies on the ability of researchers to uncover new and more efficient ways of creating highly complex structures. This work describes a novel, environmentally friendly photochemical step that converts in one pot, trivial starting materials into otherwise difficult to construct fenstrane frameworks. The rigid cores of these frameworks have significant potential in drug design. Moreover, the novelty of this work overtakes many other methods for the creation of chiral centres. No less than seven chiral centres are created in the photochemical step together with the formation of four carbon-carbon bonds and multifused rings. Jason's innovative work has been the subject of several publications in peer-reviewed journals."

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