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镍催化的不饱和烃、醛和酮的环加成反应。

Nickel-catalyzed cycloadditions of unsaturated hydrocarbons, aldehydes, and ketones.

作者信息

Tekavec Thomas N, Louie Janis

机构信息

Department of Chemistry, University of Utah, 315 South 1400 East, Salt Lake City, UT 84112-0850, USA.

出版信息

J Org Chem. 2008 Apr 4;73(7):2641-8. doi: 10.1021/jo702508w. Epub 2008 Mar 5.

Abstract

The nickel-catalyzed cycloaddition of unsaturated hydrocarbons and carbonyls is reported. Diynes and enynes were used as coupling partners. Carbonyl substrates include both aldehdyes and ketones. Reactions of diynes and aldehydes afforded the [3,3] electrocyclic ring-opened tautomers, rather than pyrans, in high yields. The cycloaddition reaction of enynes and aldehydes afforded two distinct products. A new carbon-carbon bond is formed, prior to a competitive beta-hydrogen elimination of a nickel alkoxide, between the carbonyl carbon and either one of the carbons of the olefin or the alkyne. The steric hindrance of the enyne greatly affected the chemoselectivity of the cycloaddition of enynes and aldehydes. In some cases, dihydropyran was also formed. The scope of the cycloaddition reaction was expanded to include the coupling of enynes and ketones. No beta-hydrogen elimination was observed in cycloaddition reaction of enynes and ketones. Instead, C-O bond-forming reductive elimination occurred exclusively to afford dihydropyrans in excellent yields. In all cases, complete chemoselectivity was observed; only dihydropyrans where the carbonyl carbon forms a carbon-carbon bond with a carbon of the olefin, rather than of the alkyne, were observed. All cycloaddition reactions occur at room temperature and employ nickel catalysts bearing the hindered 1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene (IPr) or its saturated analogue, 1,3-bis(2,6-diisopropylphenyl)-4,5-dihydroimidazolin-2-ylidene (SIPr).

摘要

报道了镍催化的不饱和烃与羰基化合物的环加成反应。二炔和烯炔用作偶联伙伴。羰基底物包括醛和酮。二炔与醛的反应以高产率得到[3,3]电环化开环互变异构体,而非吡喃。烯炔与醛的环加成反应得到两种不同的产物。在镍醇盐发生竞争性β-氢消除之前,在羰基碳与烯烃或炔烃的任一碳之间形成了新的碳-碳键。烯炔的空间位阻极大地影响了烯炔与醛环加成反应的化学选择性。在某些情况下,还会形成二氢吡喃。环加成反应的范围扩大到包括烯炔与酮的偶联。在烯炔与酮的环加成反应中未观察到β-氢消除。相反,专门发生了形成C-O键的还原消除反应,以优异的产率得到二氢吡喃。在所有情况下,均观察到完全的化学选择性;仅观察到羰基碳与烯烃的碳而非炔烃的碳形成碳-碳键的二氢吡喃。所有环加成反应均在室温下进行,并使用带有受阻的1,3-双(2,6-二异丙基苯基)咪唑-2-亚基(IPr)或其饱和类似物1,3-双(2,6-二异丙基苯基)-4,5-二氢咪唑啉-2-亚基(SIPr)的镍催化剂。

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