Origins of Stereoselectivity in the alpha-Alkylation of Chiral Hydrazones

dc.contributor.author

Krenske, Elizabeth H

dc.contributor.author

Houk, KN

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Lim, Daniel

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Wengryniuk, Sarah E

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Coltart, Don M

dc.date.accessioned

2011-06-21T17:26:38Z

dc.date.available

2011-06-21T17:26:38Z

dc.date.issued

2010

dc.description.abstract

Density functional theory calculations and experiment reveal the origin of stereoselectivity in the deprotonation-alkylation of chiral N-amino cyclic carbamate (ACC) hydrazones. When the ACC is a rigid, camphor-derived carbamate, the two conformations of the azaenolate intermediate differ in energy due to conformational effects within the oxazolidinone ring and steric interactions between the ACC and the azaenolate. An electrophile adds selectively to the less-hindered pi-face of the azaenolate. Although it was earlier reported that use of ACC auxiliaries led to a-alkylated ketones with er values of 82:18 to 98:2, B3LYP calculations predict higher stereosclectivity. Direct measurement of the dr of an alkylated hydrazone prior to removal of the auxiliary confirms this prediction; the removal of the auxiliary under the reported conditions can compromise the overall stereoselectivity of the process.

dc.description.version

Version of Record

dc.identifier.citation

Krenske,Elizabeth H.;Houk,K. N.;Lim,Daniel;Wengryniuk,Sarah E.;Coltart,Don M.. 2010. Origins of Stereoselectivity in the alpha-Alkylation of Chiral Hydrazones. Journal of Organic Chemistry 75(24): 8578-8584.

dc.identifier.issn

0022-3263

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https://hdl.handle.net/10161/4064

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en_US

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American Chemical Society (ACS)

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10.1021/jo1019877

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Journal of Organic Chemistry

dc.subject

lithio azaallylic systems

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asymmetric-synthesis

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acyclic ketones

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enantioselective alkylation

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organolithium compounds

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ab-initio

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density

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cyclohexanone

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solvation

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anions

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chemistry, organic

dc.title

Origins of Stereoselectivity in the alpha-Alkylation of Chiral Hydrazones

dc.title.alternative
dc.type

Other article

duke.date.pubdate

2010-12-17

duke.description.issue

24

duke.description.volume

75

pubs.begin-page

8578

pubs.end-page

8584

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