Muthusamy Sengodagounder, Babu Srinivasarao Arulananda, Gunanathan Chidambaram, Ganguly Bishwajit, Suresh Eringathodi, Dastidar Parthasarathi
Central Salt and Marine Chemicals Research Institute, Bhavnagar 364 002, India.
J Org Chem. 2002 Nov 15;67(23):8019-33. doi: 10.1021/jo0256134.
Investigations and stereoselective studies on the tandem reactions of carbonyl ylides generated from alpha-diazo ketones in the presence of carbonyl compounds are presented in this paper. Intramolecular cyclization of rhodium carbenoids generated the transient five- or six-membered-ring carbonyl ylide dipoles, which efficiently underwent 1,3-dipolar cycloaddition reactions with various dipolarophiles such as aromatic aldehydes 15, alpha,beta-unsaturated aldehydes 18/24, alpha,beta-unsaturated ketones 27/28/31, and dienone 34. The transient carbonyl ylides underwent cycloadditions with various aromatic aldehydes to furnish diverse epoxy-bridged tetrahydropyranone ring systems in a diastereoselective manner. The cycloaddition of carbonyl ylides with alpha,beta-unsaturated aldehydes 18/24 or dienone 34 afforded C=O addition products in a chemoselective manner despite the presence of C=C bonds in the above dipolarophiles. Alternatively, the cycloaddition of carbonyl ylides with alpha,beta-unsaturated ketones 27/28 provided both the C=O and C=C cycloaddition products. The cycloaddition of carbonyl ylides with carbonyl compounds occurred in good yields and was found to be highly regio- and stereoselective. Single-crystal X-ray analyses were performed to unambiguously establish the structure and stereochemistry of the novel epoxy-bridged tetrahydropyranone ring systems 35a/38. Compound 35a exhibited both intermolecular C-H...O and intramolecular C-H...pi interaction motifs in the solid-state architecture. The regio-, chemo-, and stereoselectivity observed in these reactions have been investigated by semiempirical AM1 MO calculations. FMO analyses and transition state calculations have been performed for the cycloaddition of carbonyl ylides with alpha,beta-unsaturated carbonyl compounds such as tetracyclone (34) and cyclopentenone (27a). Both FMO and transition state calculations correctly predicted the regio- and stereochemistry of the cycloadducts. The calculations further revealed that a severe steric interaction caused by the phenyl rings present in dipolarophile 34 with dipole 14a increases the activation barrier of the transition state during the cycloaddition process.
本文介绍了在羰基化合物存在下,由α-重氮酮生成的羰基叶立德的串联反应的研究及立体选择性研究。铑卡宾的分子内环化生成了瞬态的五元或六元环羰基叶立德偶极子,它们能与各种亲偶极体高效地发生1,3-偶极环加成反应,如芳香醛15、α,β-不饱和醛18/24、α,β-不饱和酮27/28/31和二烯酮34。瞬态羰基叶立德与各种芳香醛发生环加成反应,以非对映选择性的方式提供了多种环氧桥连四氢吡喃酮环系。尽管上述亲偶极体中存在碳碳双键,但羰基叶立德与α,β-不饱和醛18/24或二烯酮34的环加成反应以化学选择性的方式得到了碳氧双键加成产物。另外,羰基叶立德与α,β-不饱和酮27/28的环加成反应同时得到了碳氧双键和碳碳双键的环加成产物。羰基叶立德与羰基化合物的环加成反应产率良好,且具有高度的区域选择性和立体选择性。进行了单晶X射线分析,以明确确定新型环氧桥连四氢吡喃酮环系35a/38的结构和立体化学。化合物35a在固态结构中表现出分子间C-H...O和分子内C-H...π相互作用模式。通过半经验AM1分子轨道计算研究了这些反应中观察到的区域选择性、化学选择性和立体选择性。对羰基叶立德与α,β-不饱和羰基化合物如四环酮(34)和环戊烯酮(27a)的环加成反应进行了前线分子轨道(FMO)分析和过渡态计算。FMO分析和过渡态计算都正确地预测了环加成产物的区域选择性和立体化学。计算进一步表明,亲偶极体34中存在的苯环与偶极子14a之间的严重空间相互作用增加了环加成过程中过渡态的活化能垒。