首页> 外文期刊>Journal of Chemical Education >Kinetics and Photochemistry of Ruthenium Bisbipyridine Diacetonitrile Complexes: An Interdisciplinary Inorganic and Physical Chemistry Laboratory Exercise
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Kinetics and Photochemistry of Ruthenium Bisbipyridine Diacetonitrile Complexes: An Interdisciplinary Inorganic and Physical Chemistry Laboratory Exercise

机译:钌双双吡啶二乙腈配合物的动力学和光化学:跨学科的无机和物理化学实验室练习

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摘要

The study of ruthenium polypyridyl complexes can be widely applied across disciplines in the undergraduate curriculum. Ruthenium photochemistry has advanced many fields including dye-sensitized solar cells, photoredox catalysis, light driven water oxidation, and biological electron transfer. Equally promising are ruthenium polypyridyl complexes that provide a sterically bulky, photolabile moiety for transiently "caging" biologically active molecules. Photouncaging involves the use of visible (1-photon) or near-IR (2-photon) light to break one or more bonds between ruthenium and coordinated ligand(s), which can occur on short time scales and in high quantum yields. In this work we demonstrate the use of a model "caged" acetonitrile complex, Ru(2,2'-bipyridine)2(acetonitrile)2, or RuMeCN in an advanced synthesis and physical chemistry laboratory. Students made RuMeCN in an advanced synthesis laboratory course and performed UV-vis spectroscopy and electrochemistry. The following semester students investigated RuMeCN photolysis kinetics in a physical chemistry laboratory. These two exercises may also be combined to create a 2-week module in an advanced undergraduate laboratory course.
机译:钌多吡啶基配合物的研究可广泛应用于本科课程的各个学科。钌光化学已进入许多领域,包括染料敏化太阳能电池,光氧化还原催化,光驱水氧化和生物电子转移。同样有希望的是钌聚吡啶基络合物,它为瞬态“笼罩”生物活性分子提供了一个体积庞大,光不稳定的部分。光解开孔涉及使用可见光(1-光子)或近红外光(2-光子)破坏钌和配位配体之间的一个或多个键,这可以在短时间范围内以高量子产率发生。在这项工作中,我们证明了在先进的合成和物理化学实验室中使用模型“笼中”乙腈络合物Ru(2,2'-联吡啶)2(乙腈)2或RuMeCN的用途。学生在高级合成实验室课程中制作了RuMeCN,并进行了紫外可见光谱和电化学。以下学期的学生在物理化学实验室研究了RuMeCN的光解动力学。这两个练习也可以结合起来,以在高级本科实验室课程中创建为期2周的模块。

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