Klappenberger F, Weber-Bargioni A, Auwärter W, Marschall M, Schiffrin A, Barth J V
Physik Department E20, Technische Universitat Munchen, James-Franck Str., D-85748 Garching, Germany.
J Chem Phys. 2008 Dec 7;129(21):214702. doi: 10.1063/1.3021291.
We present a combined scanning tunneling microscopy (STM), near-edge x-ray-absorption fine-structure, and x-ray photoemission spectroscopy (XPS) study on the bonding and ordering of tetrapyridyl-porphyrin molecules on the Cu(111) surface in the 300-500 K temperature range. Following deposition at 300 K the molecules are adsorbed with a pronounced conformational adaptation of the anchored species featuring a saddle-shaped macrocycle and terminal groups pointing toward the substrate. Upon moderate annealing supramolecular chains evolve that are stabilized by metal-ligand interactions between the mesopyridyl substituents and copper adatoms resulting in twofold copper coordination. Annealing to temperatures exceeding 450 K strongly alters the molecular appearance in high-resolution STM data. This modification was also induced by controlled voltage pulses and related to a deprotonation of the molecule by XPS. Under appropriate conditions a novel binding motif leads to honeycomb structures coexisting with the chain segments. The conformation withstands annealing without large modification.
我们展示了一项结合扫描隧道显微镜(STM)、近边X射线吸收精细结构和X射线光电子能谱(XPS)的研究,该研究针对300 - 500K温度范围内四吡啶基卟啉分子在Cu(111)表面的键合和有序排列情况。在300K下沉积后,分子吸附时锚定物种呈现出明显的构象适应性,具有鞍形大环和指向衬底的端基。适度退火后,超分子链会演化形成,这些链通过中位吡啶基取代基与铜吸附原子之间的金属 - 配体相互作用而稳定,从而导致铜的二重配位。退火至超过450K的温度会强烈改变高分辨率STM数据中的分子外观。这种修饰也可由受控电压脉冲诱导产生,并且通过XPS与分子的去质子化有关。在适当条件下,一种新的结合模式会导致蜂窝结构与链段共存。该构象能够承受退火而无需大幅改变。