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Mechanistic Insights into C-H Borylation of Arenes with Organoiridium Catalysts Embedded in a Microporous Metal-Organic Framework

机译:用嵌入微孔金属 - 有机框架中的有机铱催化剂的C-H北京的机械洞察力

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Organometallic iridium catalysts can be used in conjunction with bispinacolatodiboron (B(2)Pin(2)) to effect the borylation of a variety of substrates such as arenes, alkanes, heteroarenes, and oxygenates. Recently, efforts have also focused on integrating these catalysts into porous supports, such as metal-organic frameworks (MOFs). While the mechanism of homogeneous borylation systems has been thoroughly investigated experimentally and computationally, analogous studies in MOF-supported iridium catalysts have not been conducted. Herein, we report the mechanistic investigation of a phenanthroline-iridium catalyst immobilized in the organic linker of Universitetet i Oslo (UiO)-67 (Zr6O4(OH)(4)(BPDC)(4)(PhenDC)(2), BPDC = biphenyl-4,4'-dicarboxylate, PhenDC = 1,10-phenanthroline-4,4'-dicarboxylate). By using benzene as a model substrate, variable time normalization analysis (VTNA) of the kinetic data suggested a rate law consistent with zero-order in B(2)Pin(2), and first-order in arene. A primary kinetic isotope effect (KIE) in the time course of benzene-d(6) borylation also provided complementary information about the role of the arene in the rate-determining step of the reaction. Characterization by techniques such as X-ray absorption spectroscopy (XAS) confirmed the presence of Ir(III), while pair distribution function (PDF) analysis suggested structures containing an Ir-Cl bond, further substantiated by X-ray photoelectron spectroscopy (XPS). Analysis of postcatalysis materials by inductively coupled plasma- optical emission spectroscopy (ICP-OES) revealed low boron accumulation, which may indicate an absence of boron in the resting state of the catalyst. Finally, in comparing borylation of benzene and toluene, a slight selectivity for benzene is observed, which is similar to the analogous homogeneous reaction, indicating the influence of substrate sterics on reactivity.
机译:有机金属铱催化剂可与双丙醇糖氨酸(B(2)销(2))结合使用,以实现各种基材的促进诸如植物,烷烃,杂种物和含氧化合物。最近,努力还专注于将这些催化剂与多孔载体(例如金属有机骨架(MOF)集成到多孔载体中。虽然已经通过实验和计算地进行了彻底研究了均匀促进系统的机制,但尚未进行MOF支持的铱催化剂的类似研究。在此,我们报告了固定在USLO(UIO)-67(Zr6O4(OH)(4)(4)(4)(4)(BendC)(2),BPDC =的有机接头(Zr6O4(OH)(4)(4)(2),BPDC =中联苯-4,4'-二羧酸酯,PHENDC = 1,10-菲咯啉-4,4'-二羧酸盐)。通过使用苯作为模型衬底,动力学数据的可变时间归一化分析(VTNA)建议在B(2)引脚(2)中与零级均一致的速率法,以及芳烃的一流。在苯-D(6)硼酸化时期的主要动力学同位素效应(kie)还提供了关于芳烃在反应的速率确定步骤中的互补信息。通过X射线吸收光谱(XAs)的技术表征证实了IR(III)的存在,而配对分布函数(PDF)分析建议含有IR-C1键的结构,通过X射线光电子谱(XPS)进一步证实。通过电感耦合等离子体 - 光发射光谱(ICP-OES)分析后分析材料揭示了低硼积聚,这可能表明催化剂的静止状态下的硼的不存在。最后,在比较苯和甲苯的硼化硼中,观察到苯的轻微选择性,类似于类似的均匀反应,表明底物质对反应性的影响。

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