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Adsorption and self-assembly of porphyrins on ultrathin CoO films on Ir(100)

机译:IR(100)上超薄合酶膜对卟啉的吸附和自组装

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摘要

Porphyrins represent a versatile class of molecules, the adsorption behavior of which on solid surfaces is of fundamental interest due to a variety of potential applications. We investigate here the molecule–molecule and molecule–substrate interaction of Co-5,15-diphenylporphyrin (Co-DPP) and 2H-tetrakis(p-cyanophenyl)porphyrin (2H-TCNP) on one bilayer (1BL) and two bilayer (2BL) thick cobalt oxide films on Ir(100) by scanning tunneling microscopy (STM) and density functional theory (DFT). The two substrates differ greatly with respect to their structural and potential-energy landscape corrugation with immediate consequences for adsorption and self-assembly of the molecules studied. On both films, an effective electronic decoupling from the metal substrate is achieved. However, on the 1BL film, Co-DPP molecules are sufficiently mobile at 300 K and coalesce to self-assembled molecular islands when cooled to 80 K despite their rather weak intermolecular interaction. In contrast, on the 2BL film, due to the rather flat potential landscape, molecular rotation is thermally activated, which effectively prevents self-assembly. The situation is different for 2H-TCNPP, which, due to the additional functional anchoring groups, does not self-assemble on the 1BL film but forms self-assembled compact islands on the 2BL film. The findings demonstrate the guiding effect of the cobalt oxide films of different thickness and the effect of functional surface anchoring.
机译:卟啉代表了一种多功能类别的分子,其吸附行为在固体表面上由于各种潜在的应用而具有基本利益。我们在此研究Co-5,15-二苯基卟啉(Co-DPP)和2H-四苯基(P-氰基苯基)卟啉(2H-TCNP)在一个双层(1BL)和两个双层()的分子分子和分子 - 底物 - 卟啉(2H-TCNP)( 2BL)通过扫描隧道显微镜(STM)和密度泛函理论(DFT),IR(100)上的厚钴氧化物膜。对于它们的结构和潜在 - 能量景观波纹,两种基板具有很大的差异,其立即后果对所研究的分子的吸附和自组装。在这两种薄膜上,实现了来自金属基板的有效电子去耦。然而,在1BL薄膜上,在冷却至80k时,Co-DPP分子足够移动,并且在冷却至80 k时,在分子间相互作用时冷却至80 k。相反,在2BL薄膜上,由于相当扁平的电位景观,分子旋转被热激活,从而有效地防止自组装。 2H-TCNPP的情况不同,由于附加的功能锚定组,不自组装在1BL薄膜上,而是在2BL膜上形成自组装的紧凑岛。研究结果证明了不同厚度的氧化钴膜的引导效应和功能表面锚固的效果。

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