Massimi Lorenzo, Angelucci Marco, Gargiani Pierluigi, Betti Maria Grazia, Montoro Silvia, Mariani Carlo
Dipartimento di Fisica, Università di Roma La "Sapienza," 00185 Roma, Italy.
IFIS Litoral, CONICET-UNL, Laboratorio de Fisica de Superficies e Interfaces, Güemes 3450, Santa Fe, Argentina.
J Chem Phys. 2014 Jun 28;140(24):244704. doi: 10.1063/1.4883735.
Iron-phthalocyanine and cobalt-phthalocyanine chains, assembled along the Au(110)-(1×2) reconstructed channels, present a strong interaction with the Au metallic states, via the central metal ion. X-ray photoemission spectroscopy from the metal-2p core-levels and valence band high-resolution ultraviolet photoelectron spectroscopy bring to light signatures of the interaction of the metal-phthalocyanine single-layer with gold. The charge transfer from Au to the molecule causes the emerging of a metal-2p core level component at lower binding energy with respect to that measured in the molecular thin films, while the core-levels associated to the organic macrocycle (C and N 1s) are less influenced by the adsorption, and the macrocycles stabilize the interaction, inducing a strong interface dipole. Temperature Programmed Desorption experiments and photoemission as a function of temperature allow to estimate the adsorption energy for the thin-films, mainly due to the molecule-molecule van der Waals interaction, while the FePc and CoPc single-layers remain adsorbed on the Au surface up to at least 820 K.
沿着金(110)-(1×2)重构通道组装的铁酞菁和钴酞菁链,通过中心金属离子与金的金属态呈现出强烈的相互作用。来自金属2p芯能级的X射线光电子能谱和价带高分辨率紫外光电子能谱揭示了金属酞菁单层与金相互作用的特征。从金到分子的电荷转移导致相对于在分子薄膜中测量的结果,在较低结合能处出现金属2p芯能级成分,而与有机大环(C和N 1s)相关的芯能级受吸附的影响较小,并且大环稳定了这种相互作用,诱导出强烈的界面偶极子。程序升温脱附实验以及光电子能谱随温度的变化使得能够估算薄膜的吸附能,这主要归因于分子间的范德华相互作用,而铁酞菁和钴酞菁单层在金表面至少吸附至820K。