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手性连接体系中的自旋选择性

Spin Selectivity in Chiral Linked Systems.

作者信息

Ageeva Aleksandra A, Khramtsova Ekaterina A, Magin Ilya M, Rychkov Denis A, Purtov Peter A, Miranda Miguel A, Leshina Tatyana V

机构信息

Laboratory of Magnetic Phenomena, Voevodsky Institute of Chemical Kinetics and Combustion SB RAS, Institutskaya 3, 630090, Novosibirsk, Russia.

Novosibirsk State University, Pirogova 2, 630090, Novosibirsk, Russia.

出版信息

Chemistry. 2018 Mar 12;24(15):3882-3892. doi: 10.1002/chem.201705863. Epub 2018 Feb 19.

Abstract

This work has shown spin selectivity in electron transfer (ET) of diastereomers of (R,S)-naproxen-(S)-N-methylpyrrolidine and (R,S)-naproxen-(S)-tryptophan dyads. Photoinduced ET in these dyads is interesting because of the still unexplained phenomenon of stereoselectivity in the drug activity of enantiomers. The chemically induced dynamic nuclear polarization (CIDNP) enhancement coefficients of (R,S)-diastereomers are double those of the (S,S)-analogue. These facts are also interesting because spin effects are among the most sensitive, even to small changes in spin and molecular dynamics of paramagnetic particles. Therefore, CIDNP reflects the difference in magnetoresonance parameters (hyperfine interaction constants (HFIs), g-factor difference) and lifetimes of the paramagnetic forms of (R,S)- and (S,S)-diastereomers. The difference in HFI values for diastereomers has been confirmed by a comparison of CIDNP experimental enhancement coefficients with those calculated. Additionally, the dependence of the CIDNP enhancement coefficients on diastereomer concentration has been observed for the naproxen-N-methylpyrrolidine dyad. This has been explained by the participation of ET in homo-(R,S-R,S or S,S-S,S) and hetero-(R,S-S,S) dimers of dyads. In this case, the effectivity of ET, and consequently, CIDNP, is supposed to be different for (R,S)- and (S,S)-homodimers, heterodimers, and monomers. The possibility of dyad dimer formation has been demonstrated by using high-resolution X-ray and NMR spectroscopy techniques.

摘要

这项工作展示了(R,S)-萘普生-(S)-N-甲基吡咯烷和(R,S)-萘普生-(S)-色氨酸二元化合物非对映异构体在电子转移(ET)中的自旋选择性。这些二元化合物中的光诱导电子转移很有趣,因为对映体药物活性中仍未得到解释的立体选择性现象。(R,S)-非对映异构体的化学诱导动态核极化(CIDNP)增强系数是(S,S)-类似物的两倍。这些事实也很有趣,因为自旋效应是最敏感的效应之一,即使是对顺磁粒子的自旋和分子动力学的微小变化也很敏感。因此,CIDNP反映了(R,S)-和(S,S)-非对映异构体顺磁形式的磁共振参数(超精细相互作用常数(HFIs)、g因子差异)和寿命的差异。通过将CIDNP实验增强系数与计算值进行比较,证实了非对映异构体HFI值的差异。此外,对于萘普生-N-甲基吡咯烷二元化合物,还观察到了CIDNP增强系数对非对映异构体浓度的依赖性。这可以通过电子转移参与二元化合物的同型(R,S-R,S或S,S-S,S)和异型(R,S-S,S)二聚体来解释。在这种情况下,电子转移的有效性以及因此的CIDNP,对于(R,S)-和(S,S)-同型二聚体、异型二聚体和单体来说应该是不同的。通过使用高分辨率X射线和核磁共振光谱技术,证明了二元化合物二聚体形成的可能性。

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