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氨基酸与咪唑醛 Schiff 碱缩合物或咪唑甲胺与丙酮酸 Schiff 碱缩合物的醛亚胺和酮亚胺互变异构体的选择性生成——2-位与 4-位取代咪唑的异构控制

Selective Generation of Aldimine and Ketimine Tautomers of the Schiff Base Condensates of Amino Acids with Imidazole Aldehydes or of Imidazole Methanamines with Pyruvates-Isomeric Control with 2- vs. 4-Substituted Imidazoles.

作者信息

Brewer Greg, Brewer Cynthia, Butcher Raymond J, Zavalij Peter

机构信息

Department of Chemistry, The Catholic University of America, Washington, DC 20064, USA.

Department of Chemistry, Howard University, Washington, DC 20059, USA.

出版信息

Molecules. 2024 Mar 16;29(6):1324. doi: 10.3390/molecules29061324.

Abstract

The Schiff base condensation of 5-methyl-4-imidazole carboxaldehyde, 5Me4ImCHO, and the anion of an amino acid, HN-CH(R)CO (R = -CH, -CH(CH) and -CHCH(CH)), gives the aldimine tautomer, Im-CH=N-CH(R)CO, while that of 5-methylimidazole-4-methanamine, 5MeIm-4-CHNH, with a 2-oxocarboxylate anion, R-C(O)-CO, gives the isomeric ketimine tautomer, Im-CH-N=C(R)CO. All are isolated as the neutral nickel(II) complexes, NiL, and are characterized by single crystal structure determination, IR, and positive ion ESI MS. In the cases of the 4 substituted imidazoles, either 5MeIm-4-CHO or 5MeIm-4-CHNH, both the aldimine and ketimine complexes are isolated cleanly with no evidence of an equilibrium between the two tautomers under the experimental conditions. The aldimines are blue while the tautomeric ketimines are green. In contrast, for the 2-substituted imidazoles, with either Im-2-CHO or Im-2-CHNH, the isolated product from the Schiff base condensation is the ketimine, which in the solid is green, as observed for the 4-isomer. These results suggest that for the 2-substituted imidazoles, there is a facile equilibrium between the aldimine and ketimine tautomers, and that the ketimine form is the thermodynamically favored tautomer. The aldimine tautomers of the 4-substituted imidazoles have three stereogenic centers, the nickel (Δ or Ʌ) and the two alpha carbon atoms (R or S). The observed pair of enantiomers is the ɅRR/ΔSS enantiomeric pair, suggesting that this pair is lower in energy than the others and that this is in general the preferred chiral correlation in these complexes.

摘要

5-甲基-4-咪唑甲醛(5Me4ImCHO)与氨基酸阴离子HN-CH(R)CO(R = -CH、-CH(CH) 和 -CHCH(CH))的席夫碱缩合反应生成醛亚胺互变异构体Im-CH=N-CH(R)CO,而5-甲基咪唑-4-甲胺(5MeIm-4-CHNH)与2-氧代羧酸盐阴离子R-C(O)-CO的反应则生成异构的酮亚胺互变异构体Im-CH-N=C(R)CO。所有产物均以中性镍(II)配合物NiL的形式分离得到,并通过单晶结构测定、红外光谱和正离子电喷雾质谱进行表征。对于4-取代咪唑(5MeIm-4-CHO或5MeIm-4-CHNH)的情况,醛亚胺和酮亚胺配合物都能被干净地分离出来,在实验条件下没有证据表明两种互变异构体之间存在平衡。醛亚胺为蓝色,而互变异构的酮亚胺为绿色。相比之下,对于2-取代咪唑(Im-2-CHO或Im-2-CHNH),席夫碱缩合反应分离得到的产物是酮亚胺,其在固体状态下为绿色,与4-异构体的情况相同。这些结果表明,对于2-取代咪唑,醛亚胺和酮亚胺互变异构体之间存在容易达成的平衡,并且酮亚胺形式是热力学上更有利的互变异构体。4-取代咪唑的醛亚胺互变异构体有三个立体ogenic中心,即镍(Δ或Ʌ)和两个α碳原子(R或S)。观察到的对映体对是ɅRR/ΔSS对映体对,这表明该对映体对比其他对映体对能量更低,并且这通常是这些配合物中首选的手性关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d193/10974184/18af9373799b/molecules-29-01324-g001.jpg

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