Institute of Chemistry, Siberian Branch of the Russian Academy of Science, Favorski St 1, 664033 Irkutsk, Russia.
Magn Reson Chem. 2011 Nov;49(11):740-8. doi: 10.1002/mrc.2824. Epub 2011 Oct 17.
In the (1)H and (13)C NMR spectra of selenophene-2-carbaldehyde azine, the (1)H-5, (13)C-3 and (13)C-5 signals of the selenophene ring are shifted to higher frequencies, whereas those of the (1)H-1, (13)C-1, (13)C-2 and (13)C-4 are shifted to lower frequencies on going from the EE to ZZ isomer or from the E moiety to the Z moiety of EZ isomer. The (15)N chemical shift is significantly larger in the EE isomer relative to the ZZ isomer and in the E moiety relative to the Z moiety of EZ isomer. A very pronounced difference (60-65 mg/g) between the (77)Se resonance positions is revealed in the studied azine isomers, the (77)Se peak being shifted to higher frequencies in the ZZ isomer and in the Z moiety of EZ isomer. The trends in the changes of the measured chemical shifts are reasonably reproduced by the GIAO calculations at the MP2 level of the (1)H, (13)C, (15)N and (77)Se shielding constants in the energy-favorable conformation with the syn orientation of both selenophene rings relative to the C = N groups. The NBO analysis suggests that such an arrangement of the selenophene rings may take place because of a higher energy of some intramolecular interactions.
在硒吩-2-醛嗪的 (1)H 和 (13)C NMR 谱中,硒吩环的 (1)H-5、(13)C-3 和 (13)C-5 信号向更高频率移动,而 (1)H-1、(13)C-1、(13)C-2 和 (13)C-4 的信号则向更低频率移动,从 EE 异构体变为 ZZ 异构体,或者从 E 部分变为 EZ 异构体的 Z 部分。EE 异构体中 (15)N 化学位移相对于 ZZ 异构体和 EZ 异构体中 E 部分相对于 Z 部分明显更大。在研究的嗪异构体中,(77)Se 共振位置之间存在非常明显的差异(60-65 mg/g),ZZ 异构体和 EZ 异构体中的 Z 部分中的 (77)Se 峰向更高频率移动。在能量有利构象中,通过 GIAO 计算在 MP2 水平上对 (1)H、(13)C、(15)N 和 (77)Se 屏蔽常数进行测量的化学位移变化趋势得到了合理的重现,两个硒吩环相对于 C = N 基团的顺式取向。NBO 分析表明,由于一些分子内相互作用的能量较高,可能会发生这种硒吩环的排列。