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DFT Investigation of the Hydrogen Adsorption on Graphene and Graphene Sheet Doped with Osmium and Tungsten

机译:锇和钨掺杂石墨烯和石墨烯片上氢吸附的DFT调查

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Significant interest has been focused on graphene materials for their unique properties as Hydrogen storage materials. The development of their abilities by modifying their configuration with doped or decorated transition metals was also of great interest. In this work , ?using the DFT/B3LYP/6-31G/LanL2DZ ?level of theory, graphene sheet (GS) as one of the materials of interest was doped with two transition metals, Osmium (Os) and Tungsten (W). Two active sites on the GS were tested (C4 and C16) resulted into adsorbed systems, H2@C4-GS and H2@C16-GS. C16 position showed the largest adsorption energy compared to that at C4. Therefore, C4 was replaced by the two metals and two adsorbed systems were formed : H _( 2 ) @Os-GS and H2@W-GS. The binding energy of H _( 2 ) @Os-GS was found to be greater than that of H2@W-GS.
机译:重点兴趣的重点是石墨烯材料作为储氢材料的独特性质。通过用掺杂或装饰的过渡金属进行修改的构造,他们的能力的发展也非常兴趣。在这项工作中,使用DFT / B3LYP / 6-31G / LANL2DZ?理论水平,作为感兴趣的材料之一的石墨烯片(GS)被掺杂有两个过渡金属,锇(OS)和钨(W)。测试GS上的两个活性位点(C4和C16)导致吸附系统,H2 @ C4-GS和H2 @ C16-GS。与C4相比,C16位置显示最大的吸附能量。因此,由两种金属代替C4,并形成两个吸附的系统:H _(2)/ o-GS和H2 @ W-GS。发现H _(2)@ OS-GS的结合能量大于H2 @ W-GS的粘合能量。

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