Geagea Elie, Jeannoutot Judicaël, Féron Michel, Palmino Frank, Thomas Christophe M, Rochefort Alain, Chérioux Frédéric
Univ. Bourgogne Franche-Comte, FEMTO-ST, UFC, CNRS, 15B Avenue des Montboucons, F-25030 Besancon cedex, France.
Nanoscale. 2021 Jan 7;13(1):349-354. doi: 10.1039/d0nr08291k. Epub 2020 Dec 21.
Over the past decade, on-surface fabrication of organic nanostructures has been widely investigated for the development of molecular electronic components, catalysts, and new materials. Here, we introduce a new strategy to obtain alkyl oligomers in a controlled manner using on-surface radical oligomerisations that are triggered by electrons between the tip of a scanning tunnelling microscope and the Si(111)√3 ×√3 R30°-B surface. This electron transfer event only occurs when the bias voltage is below -4.5 V and allows access to reactive radical species under exceptionally mild conditions. This transfer can effectively 'switch on' a sequence leading to the formation of oligomers of defined size distribution thanks to the on-surface confinement of the reactive species. Our approach enables new ways to initiate and control radical oligomerisations with tunnelling electrons, leading to molecularly precise nanofabrication.
在过去十年中,为了开发分子电子元件、催化剂和新材料,人们对有机纳米结构的表面制备进行了广泛研究。在此,我们介绍一种新策略,即利用扫描隧道显微镜尖端与Si(111)√3 ×√3 R30°-B表面之间的电子引发的表面自由基低聚反应,以可控方式获得烷基低聚物。这种电子转移事件仅在偏置电压低于-4.5 V时发生,并能在异常温和的条件下产生活性自由基物种。由于活性物种的表面限制,这种转移可以有效地“开启”一个导致形成具有确定尺寸分布的低聚物的序列。我们的方法为利用隧道电子引发和控制自由基低聚反应开辟了新途径,从而实现分子精确的纳米制造。