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The effect of oxygen-containing functional groups on the H_2 adsorption of graphene-based nanomaterials: experiment and theory

机译:含氧官能团对石墨烯基纳米材料H_2吸附的影响:实验与理论

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The oxygen containing functional groups of graphene oxide (GO) play an important role in hydrogen storage. In addition to the contribution of the specific surface area and micro porous porosity, the interactions of the functional groups with H-2 molecules are also an important factor in the aspect of GO hydrogen storage. This paper explores the oxygen containing functional groups affecting the hydrogen physisorption capacity of the GO and reduced graphene oxide (RGO) by experimental H-2 adsorption measurement and theoretical calculation. Experimental results related to synthesis of GO and RGO via the modified Hummer's method and characterized using SEM, TEM, SAED, XRD, FTIR, TGA and Raman spectroscopy, are presented. Compared with RGO, the surface and edge of GO contain a large amount of oxygen-containing functional groups and its specific surface area is slightly increased through BET measurement. GO is found to exhibit better H-2 uptake capacity (0.74 wt%) as compared to RGO (0.47 wt%) at 77 K and pressure up to 10 bars. The density functional theory is applied to optimize the adsorption configurations of H-2 on the surface of samples. Calculation results show that the adsorption on the GO can be promoted by surface functional groups epoxy, hydroxyl, carboxyl and carbonyl; the enhancement of hydroxyl is greater than other species on the surface and the maximal adsorption energy reaches to -0.112 eV which is about twice that of graphene. As indicated above, these functional groups could be formed easily on the graphene surface, which not only enhance specific surface area and interlayer spacing, but also significantly change the location of carbons, redistributing the electron structure of graphene and enhancing the adsorption energy. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氧化石墨烯(GO)的含氧官能团在储氢中起重要作用。除了比表面积和微孔孔隙度的贡献之外,官能团与H-2分子的相互作用也是GO储氢方面的重要因素。本文通过实验H-2的吸附测量和理论计算,探索了影响GO和还原型氧化石墨烯(RGO)氢吸附能力的含氧官能团。给出了通过改进的悍马方法合成GO和RGO的实验结果,并使用SEM,TEM,SAED,XRD,FTIR,TGA和拉曼光谱进行了表征。与RGO相比,GO的表面和边缘含有大量的含氧官能团,并且通过BET测量其比表面积略有增加。与在77 K和最高压力为10 bar的RGO(0.47 wt%)相比,GO具有更好的H-2吸收能力(0.74 wt%)。应用密度泛函理论来优化H-2在样品表面的吸附构型。计算结果表明,表面官能团环氧,羟基,羧基和羰基可以促进GO的吸附。羟基的增强作用大于表面上的其他物种,最大吸附能达到-0.112 eV,约为石墨烯的两倍。如上所述,这些官能团可以容易地在石墨烯表面上形成,这不仅增加了比表面积和层间间隔,而且显着改变了碳的位置,重新分布了石墨烯的电子结构并提高了吸附能。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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