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Ammonia adsorption on graphene and graphene oxide: a first-principles study

机译:氨在石墨烯和氧化石墨烯上的吸附:第一性原理研究

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Motivated by the recent realization of graphene sensor to detect gas molecules that are harmful to the environment, the ammonia adsorption on graphene or graphene oxide (GO) was investigated using first-principles calculation. The optimal adsorption and orientation of the NH_3 molecules on the graphene surfaces were determined, and the adsorption energies (E_b) as well as the Mulliken charge transfers of NH_3 were calculated. The E_b for the graphene are small and seem to be independent of the sites and orientations. The surface epoxy or hydroxyl groups can promote the adsorption of NH_3 on the GO; the enhancement of the E_b for the hydroxyl groups is greater than that for the epoxy groups on the surface. The charge transfers from the molecule to the surfaces also exhibit the same trend. The Broensted acid sites and Lewis acid sites could stably exist on the GO with surface hydroxyl groups and on the basal, respectively.
机译:由于最近实现了石墨烯传感器的发现以检测对环境有害的气体分子,因此采用第一性原理研究了氨在石墨烯或氧化石墨烯(GO)上的吸附。确定了石墨烯表面上NH_3分子的最佳吸附和取向,并计算了NH_3的吸附能(E_b)和Mulliken电荷转移。石墨烯的E_b很小,似乎与位置和方向无关。表面的环氧基或羟基可促进NH_3在GO上的吸附; E_b对羟基的增强作用大于表面环氧基对E_b的增强作用。从分子到表面的电荷转移也表现出相同的趋势。布朗斯台德酸位点和路易斯酸位点可以稳定地存在于具有表面羟基的GO上和基础上。

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