Liu Li, Chen Qian, Wu Yun-Dong, Li Chaozhong
Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, 354 Fenglin Road, Shanghai 200032, China.
J Org Chem. 2005 Mar 4;70(5):1539-44. doi: 10.1021/jo0481349.
Atom transfer radical cyclization reactions of N-(4-pentenyl)iodoacetamides were investigated. The reactions were efficiently promoted by BF3.OEt2. For N-alkenyl-substituted iodoamides, excellent regioselectivity in favor of 8-endo cyclization was observed, while both 7-exo and 8-endo cyclization products were formed with the 8-endo cyclization preferred in the cases of N-(2-allylphenyl)-substituted iodoamides. Density functional theory calculations at the B3LYP/6-31G level revealed that both the s-trans and the s-cis conformational transition structures were feasible for the 8-endo cyclization of N-alkenyl-substituted alpha-carbamoyl radicals while 7-exo transition structures were much less stable. For the cyclization of N-(2-allylphenyl)-substituted alpha-carbamoyl radicals, the transition structures for 8-endo and 7-exo cyclizations were of comparable energy. These results were in excellent agreement with the experimental observations.
对N-(4-戊烯基)碘乙酰胺的原子转移自由基环化反应进行了研究。这些反应能被BF3.OEt2有效促进。对于N-烯基取代的碘酰胺,观察到了有利于8-内型环化的优异区域选择性,而在N-(2-烯丙基苯基)取代的碘酰胺的情况下,7-外型和8-内型环化产物均有形成,且8-内型环化更占优势。在B3LYP/6-31G水平上的密度泛函理论计算表明,对于N-烯基取代的α-氨基甲酰基自由基的8-内型环化,s-反式和s-顺式构象转变结构都是可行的,而7-外型转变结构则稳定性差得多。对于N-(2-烯丙基苯基)取代的α-氨基甲酰基自由基的环化,8-内型和7-外型环化的转变结构能量相当。这些结果与实验观察结果非常吻合。