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Facile Covalent Modification of a Highly Ordered Pyrolytic Graphite Surface via an Inverse Electron Demand Diels-Alder Reaction under Ambient Conditions

机译:在环境条件下通过逆电子需量Diels-Alder反应轻松实现高阶热解石墨表面的共价改性

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摘要

Chemical derivatization of an sp~2-hybridized carbon surface under ambient conditions is a challenge. Tetrazine-linked compounds are shown to react with an sp2-hybridized 2D carbon surface (highly ordered pyrolytic graphite) under ambient conditions, via an inverse electron demand Diels—Alder reaction. Taking advantage of the facile derivatization of dichlorotetrazine with thiol- or hydroxyl-containine molecules, a variety of tetrazine-terminated func- tional molecules can be prepared and applied to the preparation of functional carbon materials. The methodology described here is the mildest approach reported to date for the derivatization of an sp~2-hybridized carbon surface.
机译:在环境条件下,sp〜2杂化碳表面的化学衍生化是一个挑战。已显示,在环境条件下,通过逆电子需求Diels-Alder反应,与四嗪连接的化合物与sp2杂化的2D碳表面(高度有序的热解石墨)反应。利用二氯四嗪与硫醇-或羟基-甜菜碱分子的便捷衍生作用,可以制备各种以四嗪为末端的功能分子,并将其应用于功能性碳材料的制备。这里描述的方法是迄今为止报道的最温和的方法,用于将sp〜2杂化的碳表面衍生化。

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