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氮杂环卡宾在金表面上的 Ballbot 型运动。

Ballbot-type motion of N-heterocyclic carbenes on gold surfaces.

机构信息

Physikalisches Institut, Westfälische Wilhelms-Universität, Wilhelm-Klemm-Straße 10, 48149 Münster, Germany.

Center for Nanotechnology, Heisenbergstraße 11, 48149 Münster, Germany.

出版信息

Nat Chem. 2017 Feb;9(2):152-156. doi: 10.1038/nchem.2622. Epub 2016 Oct 3.

Abstract

Recently, N-heterocyclic carbenes (NHCs) were introduced as alternative anchors for surface modifications and so offered many attractive features, which might render them superior to thiol-based systems. However, little effort has been made to investigate the self-organization process of NHCs on surfaces, an important aspect for the formation of self-assembled monolayers (SAMs), which requires molecular mobility. Based on investigations with scanning tunnelling microscopy and first-principles calculations, we provide an understanding of the microscopic mechanism behind the high mobility observed for NHCs. These NHCs extract a gold atom from the surface, which leads to the formation of an NHC-gold adatom complex that displays a high surface mobility by a ballbot-type motion. Together with their high desorption barrier this enables the formation of ordered and strongly bound SAMs. In addition, this mechanism allows a complementary surface-assisted synthesis of dimeric and hitherto unknown trimeric NHC gold complexes on the surface.

摘要

最近,N-杂环卡宾(NHCs)被引入作为表面修饰的替代锚,提供了许多有吸引力的特性,这可能使它们优于基于硫醇的系统。然而,人们很少努力研究 NHCs 在表面上的自组织过程,这是自组装单层(SAMs)形成的一个重要方面,需要分子迁移。基于扫描隧道显微镜和第一性原理计算的研究,我们提供了对 NHCs 高迁移率背后微观机制的理解。这些 NHCs 从表面提取一个金原子,导致 NHC-金原子吸附物复合物的形成,该复合物通过球型运动显示出高表面迁移率。结合它们较高的脱附势垒,这使得有序且强结合的 SAMs 得以形成。此外,这种机制允许在表面上互补地进行二聚体和以前未知的三聚体 NHC 金配合物的表面辅助合成。

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