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Lithiated azetidine and azetine chemistry

Abstract:

This work describes developments in new azetidine and azetine chemistry; specifically, methods developed for the introduction of functionality α- to nitrogen in both ring systems, with additionally in situ formation of the latter system, from azetidine substrates.

Chapter 1 discusses the growing importance of azetidines, and the current methods available for making substituted azetidines by ring formation. Further discussion comprises of current sp3 C–H activation approaches α- to nitrogen in heterocyclic compounds as potential methods for sp3 C–H activation on azetidines to give substituted azetidines. Previous work by the Hodgson group in this area is detailed.

Chapter 2 describes the advance made towards 2,3-disubstituted azetidines using the thiopivaloyl protecting/activating group, where the latter plays a key role. Optimisation, scope, selectivity and mechanistic insight into the α-deprotonation–electrophile trapping of a 3-hydroxy azetidine system is discussed, which successfully gives access to a range of 3-hydroxy-2-substituted azetidines. Preliminary investigations with 3-alkyl-2-substituted azetidines are also described.

Chapter 3 describes the development of a straightforward protocol to make 2-substituted-2- azetines, a rarely studied and difficult to access 4-membered azacycle subclass, from readily accessible azetidine starting materials using α-deprotonation–in situ elimination followed by further α-lithiation–electrophile trapping. Extension of this methodology by transmetallation from the intermediate organolithium to the organocuprate, resulting in greater electrophile scope, is also described.

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Institution:
University of Oxford
Division:
MPLS
Department:
Chemistry
Sub department:
Chemistry Research Laboratory
Research group:
Hodgson Group
Oxford college:
Exeter College
Role:
Author

Contributors

Division:
MPLS
Department:
Chemistry
Role:
Supervisor


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Funder identifier:
https://ror.org/0439y7842
Funding agency for:
Pearson, CI
More from this funder
Funding agency for:
Pearson, CI


Publication date:
2014
DOI:
Type of award:
DPhil
Level of award:
Doctoral
Awarding institution:
University of Oxford


Language:
English
Keywords:
Subjects:
UUID:
uuid:cf3c942f-80de-4092-a38d-11006ccbb9ce
Local pid:
ora:9316
Deposit date:
2014-11-13
ARK identifier:

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