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Exploitation of desilylation chemistry in tailor-made functionalization on diverse surfaces

机译:在各种表面上量身定制的官能化中开发去甲硅烷基化化学反应

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摘要

Interface engineering to attain a uniform and compact self-assembled monolayer at atomically flat surfaces plays a crucial role in the bottom-up fabrication of organic molecular devices. Here we report a promising and operationally simple approach for modification/functionalization not only at ultraflat single-crystal metal surfaces, M(111) (M=Au, Pt, Pd, Rh and Ir) but also at the highly oriented pyrolytic graphite surface, upon efficient in situ cleavage of trimethylsilyl end groups of the molecules. The obtained self-assembled monolayers are ultrastable within a wide potential window. The carbon–surface bonding on various substrates is confirmed by shell-isolated nanoparticle-enhanced Raman spectroscopy. Application of this strategy in tuning surface wettability is also demonstrated. The most valuable finding is that a combination of the desilylation with the click chemistry represents an efficient method for covalent and tailor-made functionalization of diverse surfaces.
机译:在有机分子器件的自下而上制造中,实现原子平面上均匀而紧凑的自组装单层的界面工程起着至关重要的作用。在这里,我们报告了一种有前途且操作简单的修饰/功能化方法,不仅适用于超平整单晶金属表面M(111)(M = Au,Pt,Pd,Rh和Ir),而且适用于高度取向的热解石墨表面,当有效地原位切割分子的三甲基甲硅烷基端基时。所获得的自组装单层在宽的潜在窗口内是超稳定的。壳隔离的纳米颗粒增强拉曼光谱证实了在各种基材上的碳表面键合。还演示了该策略在调整表面润湿性中的应用。最有价值的发现是,脱甲硅烷基化与点击化学反应的结合代表了一种有效的方法,用于对各种表面进行共价和量身定制的功能化。

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