N-protonation vs O-protonation in strained amides: Ab initio study

被引:72
作者
Cho, SJ [1 ]
Cui, CZ [1 ]
Lee, JY [1 ]
Park, JK [1 ]
Suh, SB [1 ]
Park, J [1 ]
Kim, BH [1 ]
Kim, KS [1 ]
机构
[1] POHANG UNIV SCI & TECHNOL,CTR BIOFUNCT MOL,DEPT CHEM,POHANG 790784,SOUTH KOREA
关键词
D O I
10.1021/jo962063z
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
Protonation plays an important catalytic role in amide bond hydrolysis. Although the protonation site of an amide is Still debatable, O-protonation is generally preferred to N-protonation in ordinary amides. However, N-protonation can be favored in strained molecular systems. To investigate this strain effect systematically, we studied formamide, strained N-formylazetidine, and highly strained N-formylaziridine using ab initio calculations. The electron correlation effect is found to be important in determining the protonation sites of strained amides, since it contributes to stabilize N-protonation somewhat more than O-protonation. Although O-protonation is highly favored in N-formylazetidine as well as in formamide, N-protonation is favored in N-formylaziridine in both aqueous and gas phases. In case of O-protonation, the geometries become planar even for highly strained amides. The presence of polar solvents contributes to stabilize N-protonation more than O-protonation, The planarity found in O-protonated strained amides and the nonplanarity in N-protonated strained amides would have an important bearing in enzymatic reactions as well as in asymmetric syntheses.
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页码:4068 / 4071
页数:4
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