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直接通过红外检测光诱导反应:从布鲁克重排到光催化。

Direct detection of photo-induced reactions by IR: from Brook rearrangement to photo-catalysis.

机构信息

Institute of Physical and Theoretical Chemistry, Graz University of Technology, Stremayrgasse 9/II, 8010, Graz, Austria.

Institute of Inorganic Chemistry, Graz University of Technology, Stremayrgasse 9/IV, 8010, Graz, Austria.

出版信息

Photochem Photobiol Sci. 2023 Jul;22(7):1683-1693. doi: 10.1007/s43630-023-00406-4. Epub 2023 Mar 18.

Abstract

In situ IR detection of photoreactions induced by the light of LEDs at appropriate wavelengths provides a simple, cost-effective, and versatile method to get insight into mechanistic details. In particular, conversions of functional groups can be selectively followed. Overlapping UV-Vis bands or fluorescence from the reactants and products and the incident light do not obstruct IR detection. Compared with in situ photo-NMR, our setup does not require tedious sample preparation (optical fibers) and offers a selective detection of reactions, even at positions where H-NMR lines overlap or H resonances are not clear-cut. We illustrate the applicability of our setup following the photo-Brook rearrangement of (adamant-1-yl-carbonyl)-tris(trimethylsilyl)silane, address photo-induced α-bond cleavage (1-hydroxycyclohexyl phenyl ketone), study photoreduction using tris(bipyridine)ruthenium(II), investigate photo-oxygenation of double bonds with molecular oxygen and the fluorescent 2,4,6-triphenylpyrylium photocatalyst, and address photo-polymerization. With the LED/FT-IR combination, reactions can be qualitatively followed in fluid solution, (highly) viscous environments, and in the solid state. Viscosity changes during the reaction (e.g., during a polymerization) do not obstruct the method.

摘要

通过在适当波长的 LED 光下进行光致反应的原位红外检测,为深入了解反应机理提供了一种简单、经济高效且多功能的方法。特别是,可以有选择地跟踪官能团的转化。反应物和产物的重叠紫外-可见带或荧光以及入射光不会阻碍红外检测。与原位光 NMR 相比,我们的设置不需要繁琐的样品制备(光纤),并且即使在 H-NMR 线重叠或 H 共振不清晰的位置,也可以选择性地检测反应。我们展示了我们的设置的适用性,包括(金刚烷-1-基-羰基)-三(三甲基甲硅烷基)硅烷的光-Brook 重排、光诱导的α键断裂(1-羟基环己基苯基酮)、使用三(联吡啶)钌(II)研究光还原、用光氧和荧光 2,4,6-三苯基吡喃鎓光催化剂研究双键的光氧化,以及光聚合。使用 LED/FT-IR 组合,可以在流体溶液、(高)粘性环境中和固态中定性地跟踪反应。反应过程中的粘度变化(例如聚合过程中)不会阻碍该方法。

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