Yong Kian Soon, Zhang Yong Ping, Yang Shuo-Wang, Wu Ping, Xu Guo Qin
Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore 117543.
J Phys Chem A. 2007 Dec 13;111(49):12266-74. doi: 10.1021/jp074627g. Epub 2007 Nov 13.
The chemisorption of tetracene on the Si(111)-7x7 surface was studied using scanning tunneling microscopy (STM) and density functional theory (DFT) calculations. On the basis of the STM results and dimension analysis, two types of binding configurations were proposed. One of the configurations involves the di-sigma reaction between two C atoms of an inner ring with an adatom-rest atom pair on the substrate to give rise to an unsymmetrical butterfly structure. Tetracene in another configuration possesses four C-Si bonds that are formed via di-sigma reactions between the C atoms at the terminal rings with two center adatom-rest atom pairs within one-half of the surface unit cell. Besides, two other binding modes were proposed based on the dimension compatibility between the tetracene C and the substrate Si dangling bonds even though their identifications through the STM images are nonexclusive. Structural modeling and adsorption energies calculations were carried out using the DFT method. Factors affecting the relative thermodynamic stabilities based on the calculation results and the relative populations of tetracene in the different binding configurations as observed experimentally were discussed.
使用扫描隧道显微镜(STM)和密度泛函理论(DFT)计算研究了并四苯在Si(111)-7x7表面的化学吸附。基于STM结果和尺寸分析,提出了两种结合构型。其中一种构型涉及内环两个C原子与衬底上的吸附原子-静止原子对之间的双σ反应,形成不对称的蝴蝶结构。另一种构型的并四苯具有四个C-Si键,这些键是通过端环上的C原子与表面晶胞一半内的两个中心吸附原子-静止原子对之间的双σ反应形成的。此外,基于并四苯C与衬底Si悬空键之间的尺寸兼容性,还提出了另外两种结合模式,尽管通过STM图像对它们的识别并不唯一。使用DFT方法进行了结构建模和吸附能计算。基于计算结果讨论了影响相对热力学稳定性的因素,以及实验观察到的并四苯在不同结合构型中的相对丰度。