Physik-Institut, Universität Zürich, CH-8057 Zürich, Switzerland.
Institut für Chemie, Universität Zürich, CH-8057 Zürich, Switzerland.
Nanoscale. 2017 Jun 29;9(25):8756-8763. doi: 10.1039/c7nr02317k.
Metal complexes of the tetradentate bipyridine based macrocycle pyrphyrin (Pyr) have recently shown promise as water reduction catalysts in homogeneous photochemical water splitting reactions. In this study, the adsorption and metalation of pyrphyrin on stoichiometric TiO(110) is investigated in ultrahigh vacuum by means of scanning tunneling microscopy, photoelectron spectroscopy, low-energy electron diffraction, and density functional theory. In a joint experimental and computational effort, the local adsorption geometry at low coverage, the long-range molecular ordering at higher coverage and the electronic structure have been determined for both the bare ligand and the cobalt-metalated Pyr molecule on TiO. The energy level alignment of CoPyr/TiO supports electron injection into TiO upon photoexcitation of the CoPyr complex and thus renders it a potential sensitizer dye. Importantly, Co-incorporation is found to stabilize the Pyr molecule against photo-induced degradation, while the bare ligand is decomposed rapidly under continuous UV-irradiation. This interesting phenomenon is discussed in terms of additional de-excitation channels for electronically highly excited molecular states.
最近,基于四齿联吡啶大环吡咯啉(Pyr)的金属配合物作为均相光化学水分解反应中的水还原催化剂显示出了前景。在这项研究中,通过扫描隧道显微镜、光电子能谱、低能电子衍射和密度泛函理论,在超高真空条件下研究了吡咯啉在化学计量 TiO(110) 上的吸附和金属化。在实验和计算的共同努力下,确定了在低覆盖率下的局部吸附几何形状、在更高覆盖率下的长程分子有序性以及 TiO 上的裸配体和钴金属化 Pyr 分子的电子结构。CoPyr/TiO 的能级排列支持 CoPyr 配合物光激发后向 TiO 的电子注入,从而使其成为一种潜在的敏化染料。重要的是,发现 Co 的掺入稳定了 Pyr 分子,防止其光诱导降解,而在连续的紫外辐照下,裸露的配体迅速分解。根据对电子高度激发的分子态的附加去激发通道,讨论了这一有趣的现象。