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The effects of conformation and solvation on optical rotation: Substituted epoxides

机译:构象和溶剂化对旋光性的影响:取代的环氧化物

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The vapor-phase optical rotation (or circular birefringence) of (S)-1,2-epoxybutane, (S)-epichlorohydrin, and (S)-epifluorohydrin has been measured at the nonresonant excitation wavelengths of 355 nm and 633 nm by means of Cavity Ring-Down Polarimetry (CRDP). Complementary solution-phase studies were performed in a,wide variety of dilute solvent media to highlight the pronounced influence of solute-solvent interactions. Density functional theory calculations of optical activity have been enlisted to unravel the structural and electronic provenance of experimental observations. Three stable, low-lying conformers have been identified and characterized for each of the targeted chiral species, with thermal (relative population weighted) averaging of their antagonistic chiroptical properties allowing specific rotation values to be predicted under both isolated and solvated conditions. For (S)-epichlorohydrin and (S)-epifluorohydrin, a self-consistent isodensity polarizable continuum model (SCI-PCM) has been exploited to gain further insight into the underlying nature of solvation effects.
机译:(S)-1,2-环氧丁烷,(S)-表氯醇和(S)-表氟醇的气相旋光(或圆双折射)已通过测量在355 nm和633 nm的非共振激发波长下进行了测定。腔衰荡极化分析(CRDP)。在各种各样的稀溶剂介质中进行了互补的溶液相研究,以强调溶质与溶剂相互作用的显着影响。光学活动的密度泛函理论计算已被征求以阐明实验观察的结构和电子来源。对于每种目标手性物种,已鉴定并鉴定了三个稳定的低位构象异构体,并对其拮抗手性进行了热(相对种群加权)平均,从而可以在分离和溶剂化条件下预测比旋光度值。对于(S)-表氯醇和(S)-表氟醇,已经利用自洽等价极化可连续谱模型(SCI-PCM)来进一步了解溶剂化作用的内在本质。

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