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ω-(联苯-4-基)链烷硫醇自组装单分子层中的奇偶效应:第一性原理研究

Odd-even effects in self-assembled monolayers of omega-(biphenyl-4-yl)alkanethiols: a first-principles study.

作者信息

Heimel Georg, Romaner Lorenz, Brédas Jean-Luc, Zojer Egbert

机构信息

School of Chemistry and Biochemistry and Center for Organic Photonics and Electronics, Georgia Institute of Technology, Atlanta, Georgia 30332-0400, USA.

出版信息

Langmuir. 2008 Jan 15;24(2):474-82. doi: 10.1021/la7023814. Epub 2007 Dec 12.

Abstract

Conjugated molecules with a saturated alkyl linker between a thiol docking group and the pi-conjugated core have been shown to form self-assembled monolayers (SAMs) with a high degree of long-range order and uniformity. Additionally, pronounced odd-even effects have been observed in a number of properties characterizing these SAMs. We focus on omega-(biphenyl-4-yl)alkanethiols with n = 0-6 -(CH2)n- units deposited on Au(111) and investigate the microscopic origin of these odd-even effects in terms of the local sulfur-gold bonding geometry by employing first-principles calculations. An additional structural parameter, the torsion angle between the two phenyl rings in the biphenyl moiety, is identified and its relation to the experimentally observed odd-even effects is discussed. More importantly, we address relevant quantities for the application of these SAMs in molecular electronic devices, in particular, the modification of the work function of the underlying metal substrate and the energetic alignment of the molecular orbitals in the SAM with the Fermi level. While no clear trend emerges for the former, we find pronounced odd-even effects for the latter. Furthermore, the insertion of a single methylene unit between the biphenyl core and the thiol appears to largely decouple the valence electronic systems of the pi-conjugated segment and the gold substrate. Our results thus provide a solid theoretical basis for the interface energetics in this important class of systems.

摘要

已证明,在硫醇对接基团与π共轭核心之间带有饱和烷基连接基的共轭分子能够形成具有高度长程有序性和均匀性的自组装单分子层(SAMs)。此外,在表征这些SAMs的许多性质中都观察到了明显的奇偶效应。我们聚焦于沉积在Au(111)上的具有n = 0 - 6个-(CH2)n-单元的ω-(联苯-4-基)链烷硫醇,并通过第一性原理计算,从局部硫-金键合几何结构的角度研究这些奇偶效应的微观起源。确定了一个额外的结构参数,即联苯部分中两个苯环之间的扭转角,并讨论了其与实验观察到的奇偶效应的关系。更重要的是,我们研究了这些SAMs在分子电子器件应用中的相关量,特别是底层金属衬底功函数的改变以及SAMs中分子轨道与费米能级的能量对准。虽然前者没有出现明显趋势,但我们发现后者存在明显的奇偶效应。此外,在联苯核心与硫醇之间插入一个亚甲基单元似乎在很大程度上使π共轭链段和金衬底的价电子系统解耦。因此,我们的结果为这一重要类系统中的界面能量学提供了坚实的理论基础。

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