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Optical Activity and Helicity Enhancement of HighlySensitive Dinaphthylmethane-Based Stereodynamic Probes for SecondaryAlcohols

机译:高度的光学活性和螺旋度增强基于灵敏的二萘甲甲烷的立体动力学探针酒类

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摘要

Chirality transfer from circular dichroism (CD)-silent secondary alcohol (inductor) to the stereodynamic bichromophoric di(1-naphthyl)methane probe (reporter) led to the generation of intense, induced exciton-type Cotton effects (CEs) in the ultraviolet–visible absorption region. The di(1-naphthyl)methane probe exhibits extraordinarily high sensitivity to even small structural variations of the alcohol skeleton, that is, the probe is able to distinguish between an oxygen atom and a methylene group in a 3-hydroxytetrahydrofurane skeleton. Signs and amplitudes of the exciton couplets of 1Bb electronic transition might be correlated with the type of stereo-differentiating parts of the molecule flanking the stereogenic center, however, not with the absolute configuration. The origin of the induced CEs was established by means of experimental and theoretical methods. As a result, a mechanism of chirality transfer from the permanent stereogenic center to the bichromophore is proposed.
机译:手性从环状二向色性(CD)沉默的仲醇(电感)转移至立体双色性二(1-萘基)甲烷探针(记者),导致在紫外线下产生强烈的诱导激子型棉花效应(CEs),可见吸收区。二(1-萘基)甲烷探针即使对醇骨架的微小结构变化也表现出极高的灵敏度,也就是说,该探针能够区分3-羟基四氢呋喃骨架中的氧原子和亚甲基。 1 Bb电子跃迁的激子对的符号和幅度可能与立体发生中心侧翼的分子的立体分化部分的类型有关,但与绝对构型无关。诱导的CE的起源是通过实验和理论方法确定的。结果,提出了手性从永久性立体中心向双色团转移的机理。

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