Department of Chemistry, Technical University of Denmark, Building 207, DK-2800 Kongens Lyngby, Denmark.
Phys Chem Chem Phys. 2011 Aug 28;13(32):14394-403. doi: 10.1039/c1cp21197h. Epub 2011 Jun 23.
We have studied self-assembled molecular monolayers (SAMs) of complexes between Os(II)/(III), Fe(II)/(III), and Ru(II)/(III) and a 2,2',6',2''-terpyridine (terpy) derivative linked to Au(111)-electrode surfaces via a 6-acetylthiohexyloxy substituent at the 4'-position of terpy. The complexes were prepared in situ by first linking the terpy ligand to the surface via the S-atom, followed by addition of suitable metal compounds. The metal-terpy SAMs were studied by cyclic voltammetry (CV), and in situ scanning tunnelling microscopy with full electrochemical potential control of substrate and tip (in situ STM). Sharp CV peaks were observed for the Os- and Fe complexes, with interfacial electrochemical electron transfer rate constants of 6-50 s(-1). Well-defined but significantly broader peaks (up to 300 mV) were observed for the Ru-complex. Addition of 2,2'-bipyridine (bipy) towards completion of the metal coordination spheres induced voltammetric sharpening. In situ STM images of single molecular scale strong structural features were observed for the osmium and iron complexes. As expected from the voltammetric patterns, the surface coverage was by far the highest for the Ru-complex which was therefore selected for scanning tunnelling spectroscopy. These correlations displayed a strong peak around the equilibrium potential with systematic shifts with increasing bias voltage, as expected for a sequential two-step in situ ET mechanism.
我们研究了通过在 4'位上的 6-乙酰硫基己氧基取代基连接到 Au(111)电极表面的 Os(II)/(III)、Fe(II)/(III)和 Ru(II)/(III)与 2,2',6',2''-三联吡啶 (terpy) 衍生物的复合物的自组装分子单层 (SAM)。通过首先将 terpy 配体通过 S-原子连接到表面,然后添加合适的金属化合物来制备复合物。通过循环伏安法 (CV) 和具有基底和尖端的全电化学势控制的原位扫描隧道显微镜 (in situ STM) 研究了金属-terpy SAM。观察到 Os 和 Fe 配合物的 CV 峰尖锐,界面电化学电子转移速率常数为 6-50 s(-1)。对于 Ru 配合物,观察到定义良好但明显更宽的峰(高达 300 mV)。添加 2,2'-联吡啶 (bipy) 以完成金属配位球体诱导了伏安法的锐化。观察到单分子尺度强结构特征的原位 STM 图像对于 Os 和 Fe 配合物。根据伏安模式,Ru 配合物的表面覆盖率迄今为止是最高的,因此选择用于扫描隧道光谱法。这些相关性在平衡电势周围显示出一个强峰,随着偏置电压的增加系统地移动,这与顺序两步原位 ET 机制一致。