Hoster Harry E, Roos Matthias, Breitruck Achim, Meier Christoph, Tonigold Katrin, Waldmann Thomas, Ziener Ulrich, Landfester Katharina, Behm R Jürgen
Institute of Surface Chemistry and Catalysis, Ulm University, D-89069 Ulm, Germany.
Langmuir. 2007 Nov 6;23(23):11570-9. doi: 10.1021/la701382n. Epub 2007 Oct 3.
The influence of the substrate and the deposition conditions-vapor deposition versus deposition from solution-on the structures formed upon self-assembly of deposited bis(terpyridine) derivative (2,4'-BTP) monolayers on different hexagonal substrates, including highly oriented pyrolytic graphite (HOPG), Au(111), and (111)-oriented Ag thin films, was investigated by high-resolution scanning tunneling microscopy and by model calculations of the intermolecular energies and the lateral corrugation of the substrate-adsorbate interaction. Similar quasi-quadratic network structures with almost the same lattice constants obtained on all substrates are essentially identical to the optimum configuration expected from an optimization of the adlayer structure with C-H...N-type bridging bonds as a structure-determining factor, which underlines a key role of the intermolecular interactions in adlayer order. Slight distortions from the optimum values to form commensurate adlayer structures on the metal substrates and the preferential orientation of the adlayer with respect to the substrate are attributed to the substrate-adsorbate interactions, specifically, the lateral corrugation in the substrate-adsorbate interaction upon lateral displacement and rotation of the adsorbed BTP molecules. The fact that similar adlayer structures are obtained on HOPG under ultrahigh vacuum conditions (solid|gas interface) and on HOPG in trichlorobenzene (solid|liquid interface) indicates that the intermolecular interactions are not severely affected by the solvent.
通过高分辨率扫描隧道显微镜以及分子间能量和底物 - 吸附质相互作用的横向波纹的模型计算,研究了底物以及沉积条件(气相沉积与溶液沉积)对沉积的双(三联吡啶)衍生物(2,4'-BTP)单层在不同六边形底物(包括高度取向热解石墨(HOPG)、Au(111) 和 (111) 取向的 Ag 薄膜)上自组装形成的结构的影响。在所有底物上获得的具有几乎相同晶格常数的类似准二次网络结构,基本上与以 C-H...N 型桥键作为结构决定因素对吸附层结构进行优化所预期的最佳构型相同,这突出了分子间相互作用在吸附层有序排列中的关键作用。在金属底物上形成相称吸附层结构时与最佳值的轻微偏差以及吸附层相对于底物的优先取向归因于底物 - 吸附质相互作用,具体而言,是吸附的 BTP 分子横向位移和旋转时底物 - 吸附质相互作用中的横向波纹。在超高真空条件下(固体|气体界面)在 HOPG 上以及在三氯苯中(固体|液体界面)在 HOPG 上获得类似吸附层结构这一事实表明,分子间相互作用不会受到溶剂的严重影响。