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在表面上将未功能化的卟啉清洁偶联,得到高度取向的有机金属寡聚物。

Clean coupling of unfunctionalized porphyrins at surfaces to give highly oriented organometallic oligomers.

机构信息

Surface Science Research Centre and Department of Chemistry, University of Liverpool, Liverpool L69 3BX, United Kingdom.

出版信息

J Am Chem Soc. 2011 Aug 10;133(31):12031-9. doi: 10.1021/ja201389u. Epub 2011 Jul 15.

Abstract

The direct coupling of complex, functional organic molecules at a surface is one of the outstanding challenges in the road map to future molecular devices. Equally demanding is to meet this challenge without recourse to additional functionalization of the molecular building blocks and via clean surface reactions that leave no surface contamination. Here, we demonstrate the directional coupling of unfunctionalized porphyrin molecules--large aromatic multifunctional building blocks--on a single crystal copper surface, which generates highly oriented one-dimensional organometallic macromolecular nanostructures (wires) in a reaction which generates gaseous hydrogen as the only byproduct. In situ scanning tunneling microscopy and temperature programmed desorption, supported by theoretical modeling, reveal that the process is driven by C-H bond scission and the incorporation of copper atoms in between the organic components to form a very stable organocopper oligomer comprising organometallic edge-to-edge porphyrin-Cu-porphyrin connections on the surface that are unprecedented in solution chemistry. The hydrogen generated during the reaction leaves the surface and, therefore, produces no surface contamination. A remarkable feature of the wires is their stability at high temperatures (up to 670 K) and their preference for 1D growth along a prescribed crystallographic direction of the surface. The on-surface formation of directional organometallic wires that link highly functional porphyrin cores via direct C-Cu-C bonds in a single-step synthesis is a new development in surface-based molecular systems and provides a versatile approach to create functional organic nanostructures at surfaces.

摘要

在未来的分子器件路线图中,将复杂的功能有机分子直接偶联到表面上是一项极具挑战性的任务。同样具有挑战性的是,在不额外官能化分子构建块的情况下,通过清洁的表面反应来满足这一挑战,这些反应不会留下表面污染。在这里,我们展示了未官能化卟啉分子(大型芳香多功能构建块)在单晶铜表面上的定向偶联,该反应生成了高度定向的一维有机金属大分子纳米结构(线),同时生成了气态氢作为唯一的副产物。原位扫描隧道显微镜和程序升温脱附,辅以理论建模,表明该过程是由 C-H 键的断裂以及铜原子掺入有机分子之间驱动的,形成了非常稳定的有机铜低聚物,其中包括表面上的有机金属边缘到边缘卟啉-Cu-卟啉连接,这在溶液化学中是前所未有的。反应过程中生成的氢气离开表面,因此不会产生表面污染。这些线的一个显著特点是它们在高温(高达 670 K)下的稳定性,以及它们沿着表面的规定晶体学方向优先进行一维生长的特性。在表面上通过直接 C-Cu-C 键将高度功能化的卟啉核心连接形成定向有机金属线的单步合成是表面基分子系统的新发展,并为在表面上创建功能性有机纳米结构提供了一种通用方法。

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