Department of Chemistry and Biochemistry, University of Notre Dame, Notre Dame, IN 46556, USA.
Phys Chem Chem Phys. 2013 May 14;15(18):6973-81. doi: 10.1039/c3cp50225b. Epub 2013 Apr 4.
Scanning tunneling microscopy images of diferrocenylacetylene (DFA) coadsorbed with benzene on Au(111) show individual and close-packed DFA molecules, either adsorbed alongside benzene or on top of a benzene monolayer. Images acquired over a range of positive and negative tip-sample bias voltages show a shift in contrast, with the acetylene linker appearing brighter than the ferrocenes at positive sample bias (where unoccupied states primarily contribute) and the reverse contrast at negative bias. Density functional theory was used to calculate the electronic structure of the gas-phase DFA molecule, and simulated images produced through two-dimensional projections of these calculations approximate the experimental images. The symmetry of both experimental and calculated molecular features for DFA rules out a cis adsorption geometry, and comparison of experiment to simulation indicates torsion around the inter-ferrocene axis between 90° and 180° (trans); the cyclopentadienyl rings are thus angled with respect to the surface.
扫描隧道显微镜图像显示,二茂铁乙炔(DFA)与苯共吸附在 Au(111)上,存在单个和密堆积的 DFA 分子,它们可以吸附在苯分子旁边或单层苯分子的顶部。在正、负针尖-样品偏置电压范围内采集的图像显示对比度发生了变化,在正样品偏置(其中未占据态主要贡献)时,乙炔连接基团比二茂铁更亮,而在负偏置时则相反。密度泛函理论用于计算气相 DFA 分子的电子结构,通过这些计算的二维投影产生的模拟图像近似于实验图像。DFA 的实验和计算分子特征的对称性排除了顺式吸附几何形状,实验与模拟的比较表明,在两个二茂铁之间的轴上的扭转角度在 90°和 180°之间(反式);因此,环戊二烯基环相对于表面成一定角度。