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Hydrogenation of Graphene by Reaction at High Pressure and High Temperature

机译:高压高温下石墨烯的氢化反应

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摘要

The chemical reaction between hydrogen and purely sp(2)-bonded graphene to form graphene's purely sp(3)-bonded analogue, graphane, potentially allows the synthesis of a much wider variety of novel two-dimensional materials by opening a pathway to the application of conventional chemistry methods in graphene. Graphene is currently hydrogenated by exposure to atomic hydrogen in a vacuum, but these methods have not yielded a complete conversion of graphene to graphane, even with graphene exposed to hydrogen on both sides of the lattice. By heating graphene in molecular hydrogen under compression to modest high pressure in a diamond anvil cell (2.6-5.0 GPa), we are able to react graphene with hydrogen and propose a method whereby fully hydrogenated graphane may be synthesized for the first time.
机译:氢与纯sp(2)键合的石墨烯之间的化学反应形成石墨烯的纯sp(3)键合的类似物石墨烷可能通过打开应用途径来潜在地合成更多种类的新型二维材料石墨烯中常规化学方法的概述。目前,石墨烯是通过在真空中暴露于原子氢来氢化的,但是即使石墨烯在晶格的两侧都暴露于氢,这些方法也无法将石墨烯完全转化为石墨烯。通过在金刚石砧室中将分子氢中的石墨烯在压缩状态下加热到适度的高压(2.6-5.0 GPa),我们能够使石墨烯与氢反应,并提出了一种方法,可以首次合成完全氢化的石墨烷。

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