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首页> 外文期刊>Catalysis Today >Ruthenium tris bipyridine derivatives and their photocatalytic activity in [4+2] cycloadditions. An experimental and DFT study
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Ruthenium tris bipyridine derivatives and their photocatalytic activity in [4+2] cycloadditions. An experimental and DFT study

机译:钌Tris Bi0赖氨酸衍生物及其光催化活性在[4 + 2]环加成中。 实验和DFT研究

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摘要

We report the study of a series of Ru-bipyridine (Ru-Bpy) complexes to correlate their photophysical and electrochemical properties to their performance in [4 + 2] cycloadditions, as a model reaction for electron transfer catalysis. Redox potentials, absorption and emission spectra, quantum yields and DFT calculations are presented to understand the catalytic transformation. The study shows that complex [Ru(Bpy)(3)](PF6)(2) is the more active photocatalyst, giving complete conversion to the product after 2 h reaction under white light. Any substitution in the para position of the Bpy ring decreases the reaction conversion. The [4 + 2] cycloaddition can be performed with different substrates and dienes, using either acetonitrile or nitromethane as solvents. Mechanistic studies suggest that the active catalyst for the transformation is [Ru(Bpy)(3)](3+) and that the rate determining step is the oxidation of [Ru(Bpy)(3)](2+) to generate the corresponding Ru3+ species.
机译:我们报告了一系列Ru-Biphyridine(Ru-Bpy)配合物的研究,以将它们的光学和电化学性能与它们在[4 + 2]环加成中的性能相关,作为电子转移催化的模型反应。 提出了氧化还原电位,吸收和发射光谱,量子产率和DFT计算以了解催化转化。 该研究表明,复杂的[Ru(BPY)(3)](PF6)(2)是更活跃的光催化剂,在白光下2小时后再次转化为产物。 BPY环的PARA位置中的任何替代都会降低反应转化。 可以使用乙腈或硝基甲烷作为溶剂,用不同的底物和二烯进行[4 + 2]环加成。 机械研究表明,转化的活性催化剂是[Ru(BPY)(3)](3 +),速率确定步骤是[Ru(BPY)(3)](2+)产生的氧化 相应的ru3 +物种。

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