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Chromophore Activation of αβ‐Unsaturated Carbonyl Compounds and Its Application to Enantioselective Photochemical Reactions

机译:αβ-不饱和羰基化合物的发色团活化及其在对映选择性光化学反应中的应用

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摘要

The first law of photochemistry, as described by Theodor von Grotthuß and John W. Draper, states that only the light absorbed by the irradiated matter can effect photochemical change. Consequently, the photochemical behavior of a molecule can be controlled by bringing its absorbance properties in line with the emission of the light source. A compound with a chromophore that only absorbs light at short wavelengths will not be excited by light of longer wavelengths. If one can reversibly modify the photophysical properties of a compound with a chemical activator, then it is possible to photoexcite only the activated species. For α,β‐unsaturated carbonyl compounds, the use of Lewis acids, Brønsted acids, or the formation of the respective iminium ions can bring about the desired chromophore activation to catalyze a photochemical reaction at a given wavelength. In this Minireview, the concept of chromophore activation will be illustrated, and examples of its implementation in enantioselective catalysis will be discussed.
机译:如Theodor vonGrotthuß和John W. Draper所描述的,光化学的第一定律指出,只有被照射物质吸收的光才能影响光化学变化。因此,可以通过使分子的吸收特性与光源的发射一致来控制分子的光化学行为。具有发色团的化合物仅吸收短波长的光,不会被较长波长的光激发。如果可以用化学活化剂可逆地改变化合物的光物理性质,则可以仅光激发被活化的物质。对于α,β-不饱和羰基化合物,使用路易斯酸,布朗斯台德酸或形成相应的亚胺离子可以带来所需的生色团活化,从而在给定波长下催化光化学反应。在此Minireview中,将说明生色团活化的概念,并讨论其在对映选择性催化中的实施实例。

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