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从卟啉到吡卟啉:分子催化剂在Au(111)上的吸附研究及金属化

From porphyrins to pyrphyrins: adsorption study and metalation of a molecular catalyst on Au(111).

作者信息

Mette Gerson, Sutter Denys, Gurdal Yeliz, Schnidrig Stephan, Probst Benjamin, Iannuzzi Marcella, Hutter Jürg, Alberto Roger, Osterwalder Jürg

机构信息

Physik-Institut, Universität Zürich, CH-8057 Zürich, Switzerland.

Institut für Chemie, Universität Zürich, CH-8057 Zürich, Switzerland.

出版信息

Nanoscale. 2016 Apr 21;8(15):7958-68. doi: 10.1039/c5nr08953k.

Abstract

The molecular ligand pyrphyrin, a tetradentate bipyridine based macrocycle, represents an interesting but widely unexplored class of molecules. It resembles the well-known porphyrin, but consists of pyridyl subunits instead of pyrroles. Metal complexes based on pyrphyrin ligands have recently shown promise as water reduction catalysts in homogeneous photochemical water splitting reactions. In this study, the adsorption and metalation of pyrphyrin on a single crystalline Au(111) surface is investigated in an ultrahigh vacuum by means of scanning tunneling microscopy, low-energy electron diffraction, X-ray photoelectron spectroscopy and density functional theory. Pyrphyrin coverages of approximately one monolayer and less are obtained by sublimation of the molecules on the substrate kept at room temperature. The molecules self-assemble in two distinct phases of long-range molecular ordering depending on the surface coverage. The deposition of cobalt metal and subsequent annealing lead to the formation of Co-ligated pyrphyrin molecules accompanied by a pronounced change of the molecular self-assembly. Electronic structure calculations taking the herringbone reconstruction of Au(111) into account show that the molecules are physisorbed, but preferred adsorption sites are identified where Co and the N atoms of the two terminal cyano groups are optimally coordinated to the surface Au atoms. An intermediate state of the metalation reaction is observed and the reaction steps for the Co metalation of pyrphyrin molecules on Au(111) are established in a joint experimental and computational effort.

摘要

分子配体卟吩是一种基于双吡啶的四齿大环化合物,代表了一类有趣但尚未得到广泛研究的分子。它类似于著名的卟啉,但由吡啶基亚基而非吡咯组成。基于卟吩配体的金属配合物最近在均相光化学水分解反应中显示出作为水还原催化剂的潜力。在本研究中,利用扫描隧道显微镜、低能电子衍射、X射线光电子能谱和密度泛函理论,在超高真空中研究了卟吩在单晶Au(111)表面的吸附和金属化过程。通过将分子升华到保持在室温的衬底上,获得了大约一个单层及以下的卟吩覆盖度。根据表面覆盖度,分子自组装成两种具有长程分子有序性的不同相。钴金属的沉积及随后的退火导致形成与钴配位的卟吩分子,同时分子自组装发生明显变化。考虑到Au(111)的人字形重构进行的电子结构计算表明,分子是物理吸附的,但确定了优先吸附位点,其中钴和两个末端氰基的氮原子与表面金原子实现最佳配位。观察到金属化反应的中间状态,并通过实验和计算相结合的方法确定了卟吩分子在Au(111)上钴金属化的反应步骤。

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