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On-surface transmetalation of metalloporphyrins

机译:金属的表面transmetalation

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Increasing the complexity of 2D metal-organic networks has led to the fabrication of structures with interesting magnetic and catalytic properties. However, increasing complexity by providing different coordination environments for different metal types imposes limitations on their synthesis if the controlled placement of one metal type into one coordination environment is desired. Whereas metal insertion into free-base porphyrins at the vacuum/solid interface has been thoroughly studied, providing detailed insight into the mechanisms at play, the chemical interaction of a metal atom with a metallated porphyrin is rarely investigated. Herein, the breadth of metalation reactions is augmented towards the metal exchange of a metalloporphyrin through the deliberate addition of atomic metal centers. The cation of Fe(ii)-tetraphenylporphyrins can be replaced by Co in a redox transmetalation-like reaction on a Au(111) surface. Likewise, Cu can be replaced by Co. The reverse reaction does not occur, i.e. Fe does not replace Co in the porphyrin. This non-reversible exchange is investigated in detail by X-ray absorption spectroscopy complemented by scanning tunneling microscopy. Density functional theory illuminates possible reaction pathways and leads to the conclusion that the transmetalation proceeds through the adsorption of initially metallic (neutral) Co onto the porphyrin and the expulsion of Fe towards the surface accompanied by Co insertion. Our findings have important implications for the fabrication of porphyrin layers on surfaces when subject to the additional deposition of metals. Mixed-metal porphyrin layers can be fabricated by design in a solvent-free process, but conversely care must be taken that the transmetalation does not proceed as an undesired side reaction.
机译:增加的复杂性2 d有机配合网络导致了结构的制造有趣的磁性和催化属性。提供不同的协作环境不同的金属类型强加限制合成的控制位置一个金属类型为一个协调的环境是理想的。游离碱卟啉在真空/固体接口已经彻底研究,提供详细深入的机制在起作用,化学金属原子的相互作用metallated卟啉很少研究。在此,金属化作用反应的广度增强的金属交易所金属卟啉通过深思熟虑的加法金属原子的中心。铁(ii) -tetraphenylporphyrins可以取而代之在氧化还原transmetalation-like反应非盟(111)表面。有限公司逆向反应不发生,即铁不能取代卟啉的有限公司。不可逆的交换详细调查通过x光吸收光谱补充扫描隧道显微镜。理论可能的反应途径和照亮导致transmetalation的结论通过最初的吸附金属(中性)有限公司到卟啉和驱逐菲向表面陪同通过插入。对卟啉的制造层表面时受到额外的沉积的金属。层可以通过设计制作的无溶剂的过程,但是必须反过来照顾采取transmetalation不继续作为一个不受欢迎的副作用。

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