Physik Department E20, Technische Universität München , James-Franck-Straße 1, D-85748 Garching, Germany.
J Am Chem Soc. 2014 Jul 2;136(26):9346-54. doi: 10.1021/ja501680n. Epub 2014 Jun 23.
The templated synthesis of porphyrin dimers, oligomers, and tapes has recently attracted considerable interest. Here, we introduce a clean, temperature-induced covalent dehydrogenative coupling mechanism between unsubstituted free-base porphine units yielding dimers, trimers, and larger oligomers directly on a Ag(111) support under ultrahigh-vacuum conditions. Our multitechnique approach, including scanning tunneling microscopy, near-edge X-ray absorption fine structure and photoelectron spectroscopy complemented by theoretical modeling, allows a comprehensive characterization of the resulting nanostructures and sheds light on the coupling mechanism. We identify distinct coupling motifs and report a decrease of the electronic gap and a modification of the frontier orbitals directly associated with the formation of triply fused dimeric species. This new on-surface homocoupling protocol yields covalent porphyrin nanostructures addressable with submolecular resolution and provides prospective model systems towards the exploration of extended oligomers with tailored chemical and physical properties.
近年来,卟啉二聚体、齐聚物和分子带的模板合成引起了相当大的兴趣。在这里,我们在超高真空条件下,在 Ag(111)基底上引入了一种清洁的、温度诱导的、无取代自由碱基卟啉单元间的共价脱氢偶联机制,可直接得到二聚体、三聚体和更大的齐聚物。我们的多技术方法包括扫描隧道显微镜、近边 X 射线吸收精细结构和光电子能谱,并辅以理论建模,实现了对所得纳米结构的全面表征,并揭示了偶联机制。我们确定了不同的偶联模式,并报告了电子能隙的减小和与三重融合二聚体形成直接相关的前沿轨道的修饰。这种新的表面同偶联方案得到了具有亚分子分辨率可寻址的共价卟啉纳米结构,并提供了有前景的模型体系,以探索具有定制化学和物理性质的扩展齐聚物。