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Theoretical investigation of manganese adsorption on graphene and graphane: A first-principles comparative study

机译:锰在石墨烯和石墨烯上的吸附理论研究:第一性原理比较研究

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摘要

Within the framework of spin-polarized generalized gradient approximation (σGGA) of the density functional theory (DFT) and pseudopotential method, the structural, magnetic, and electronic properties of graphene and graphane upon the adsorption of manganese atoms have been theoretically investigated. In contrast to the recent results (New J. Phys. 12, 063020 (2010)), Mn atom has been found to be adsorbed on a hollow-site configuration and no appreciable indication to substitute one of the C atoms of the graphene sheet. Unlike the recent results on Mn-doped graphane (Carbon 48, 3901 (2010)), the Mn adatom prefers to adsorb on the top of a carbon atom, forming a bridge with the uppermost hydrogen atoms. The magnetic moment of the Mn-doped graphene is found to be larger than that of the Mn-doped graphane. The structural parameters and electronic properties of both Mn-doped graphene and Mn-doped graphane are determined and compared with the available data.
机译:在密度泛函理论(DFT)和伪电势方法的自旋极化广义梯度逼近(σGGA)框架内,理论上研究了石墨烯和石墨烷在吸附锰原子上的结构,磁性和电子性质。与最近的结果相反(New J. Phys。12,063020(2010)),发现Mn原子被吸附在中空位构型上,没有明显迹象表明可以替代石墨烯片的C原子之一。与最近关于Mn掺杂的石墨烷的研究结果不同(Carbon 48,3901(2010)),Mn吸附原子更喜欢吸附在碳原子的顶部,与最高氢原子形成桥。发现掺杂Mn的石墨烯的磁矩大于掺杂Mn的石墨烷的磁矩。确定了掺锰石墨烯和掺锰石墨烷的结构参数和电子性能,并将其与现有数据进行了比较。

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