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Synthetic Investigation on the Biomimetic Metal-Catalyzed Sulfoxidations and Photochemical Generation of a Highly Reactive Ruthenium(V)-Oxo Porphyrin

机译:仿金属催化的高反应性钌(V)-氧卟啉的硫氧化和光化学生成的合成研究

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摘要

Catalytic oxidation plays a crucial role in current chemical and pharmaceutical industries which is also a leading technology for green chemical processes. In Nature, the ubiquitous cytochrome P450 enzymes can catalyze a wide variety of oxidation reactions with high efficiency and selectivity. Many transition metal catalysts are designed as the biomimetic model of cytochrome P450 enzymes. In this work, series of metalloporphyrins and metallocorroles have been successfully synthesized to investigate and develop catalytic selective oxidation of sulfides to sulfoxides.Manganese(III) porphyrin complexes (2) and manganese(III) corrole complexes (6) with iodobenzene diacetate [PhI(OAc)2] as a mild oxygen source exhibited remarkable catalytic activity toward selective oxidation of sulfides to sulfoxides under mild conditions. Conspicuous is the fact that readily soluble PhI(OAc)2 in the presence of a small amount of water is more efficient than the commonly used PhIO and other oxygen sources under identical conditions. It was found that the reactivity of manganese(III) porphyrin catalysts was greatly affected by axial ligand and the weakly binding chlorate gave the highest catalytic activity in the oxidation of sulfide. Both porphyrin-manganese and corrole-manganese catalysts catalyzed the highly selective oxidation of para-substituted thioanisoles with PhI(OAc)2 in the presence of a small amount of water. Complete conversion and of sulfide and excellent selectivities for sulfoxide were achieved within 120 min.We discovered that photo-disproportionation of a bis-porphyrin-diruthenium(IV)- μ-oxo dimer gave a porphyrin-ruthenium(III) species and a putative poprhyrinruthenium( V)-oxo species that can be detected and studied in real time using laser flash photolysis methods. As determined by its spectral and kinetic behavior, the same oxo transient was also formed by photolysis of a porphyrin-ruthenium(III) N-oxide adduct. Second-order rate constants for reactions with several substrates at 22 °C were determined; representative values of rate constants were kox = 6.6 × 103 M-1 s-1 for diphenylmethanol, kox = 2.5 × 103 M-1 s-1 for styrene, and kox = 1.8 × 103 M-1 s-1 for cyclohexene.
机译:催化氧化在当前的化学和制药行业中起着至关重要的作用,这也是绿色化学过程的领先技术。在自然界中,普遍存在的细胞色素P450酶可以高效高效地催化多种氧化反应。许多过渡金属催化剂被设计为细胞色素P450酶的仿生模型。在这项工作中,成功合成了一系列金属卟啉和金属茂化合物,以研究和开发硫化物催化选择性氧化为亚砜的方法。锰(III)卟啉配合物(2)和锰(III)腐蚀配合物(6)与碘代苯二乙酸盐[PhI( OAc)2]作为一种温和的氧源,在温和的条件下,对硫化物选择性氧化为亚砜具有显着的催化活性。引人注目的事实是,在少量水的存在下,易溶的PhI(OAc)2在相同条件下比常用的PhIO和其他氧气源更有效。发现锰(III)卟啉催化剂的反应性受轴向配体的影响很大,弱结合的氯酸盐在硫化物的氧化中具有最高的催化活性。在少量的水存在下,卟啉锰和Corrole-Mn催化剂都可以用PhI(OAc)2催化对位取代的硫代苯甲醚的高选择性氧化。在120分钟内完成了硫化物的完全转化和硫化物的转化以及对亚砜的优异选择性。我们发现双卟啉-二钌(IV)-μ-氧代二聚体的光歧化产生了卟啉-钌(III)物种和推定的吡啶钌。 (V)-氧代物种,可以使用激光闪光光解方法实时检测和研究。如通过其光谱和动力学行为所确定的,通过卟啉-钌(III)N-氧化物加合物的光解还形成了相同的氧代瞬态。确定了与几种底物在22°C下反应的二级速率常数;速率常数的代表值是二苯甲醇的kox = 6.6×103 M-1 s-1,苯乙烯的kox = 2.5×103 M-1 s-1和环己烯的kox = 1.8×103 M-1 s-1。

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    Luo WeiLong;

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  • 年度 2016
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