Ukah Nathaniel, Wegner Hermann A
Institute of Organic Chemistry, Justus Liebig University Giessen, Heinrich-Buff-Ring 17, 35392 Giessen, Germany.
Center for Materials Research (ZfM/LaMa), Justus Liebig University Giessen, Heinrich-Buff-Ring 16, 35392 Giessen, Germany.
Nanoscale. 2024 Oct 10;16(39):18524-18533. doi: 10.1039/d4nr03065f.
Organic on-surface syntheses promise to be a useful method for direct integration of organic molecules onto 2-dimensional (2D) flat surfaces. In the past years, there has been an increasing understanding of the mechanistic details of reactions on surfaces, however, mostly under ultra-high vacuum on very defined surfaces. Herein, we expand the scope to gold nanoparticles (AuNps) in solution an Ullmann reaction of aryl halides connected N-heterocyclic carbenes (NHCs) to AuNps. Through design and syntheses of various organic precursors, we address the influence of the contact angle, reactivity of the halogen and the proximity of the entire coupling partner on on-surface reactivities, thus, establishing general parameters governing organic on-surface syntheses on AuNps in solution, in comparison with the reactivity on defined surfaces under ultra-high vacuum. The retention of such halogenated Nps even at higher reaction temperatures holds great promise in the fields of materials engineering, nanotechnology and molecular self-assembly, while expanding the toolbox of organic chemistry synthesis in accessing various covalent architectures.
有机表面合成有望成为将有机分子直接整合到二维(2D)平面上的一种有用方法。在过去几年中,人们对表面反应的机理细节有了越来越深入的了解,然而,这大多是在超高真空下在非常明确的表面上进行的。在此,我们将范围扩展到溶液中的金纳米颗粒(AuNps)——芳基卤化物与N-杂环卡宾(NHCs)连接到AuNps上的乌尔曼反应。通过设计和合成各种有机前体,我们研究了接触角、卤素的反应性以及整个偶联伙伴的 proximity 对表面反应性的影响,从而确定了在溶液中AuNps上进行有机表面合成的一般参数,与超高真空下明确表面上的反应性进行比较。即使在较高反应温度下,这种卤化纳米颗粒的保留在材料工程、纳米技术和分子自组装领域也具有巨大潜力,同时在获取各种共价结构方面扩展了有机化学合成的工具箱。