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Influence of Pd/Pd-2 decoration on the structural, electronic and sensing properties of monolayer graphene in the presence of methane molecule: A dispersion-corrected DFf study

机译:甲烷分子存在下Pd / Pd-2装饰对单层石墨烯的结构,电子和传感性能的影响:分散校正的DFf研究

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This paper is devoted to study on the methane (CH4) adsorption ability of graphene decorated by a single palladium (Pd) atom and its dimer (Pd-2), using dispersion-corrected density functional theory (DFT-D-2). The adsorption energy, optimum geometry and electronic structure in terms of density of states, band structure, and charge transfer are calculated. Our results show that van der Waals interactions lead to physisorption of CH4 on the prisitine graphene with the adsorption energy of -112 meV, which is close to its experimental value. The calculations also show that hybridization of Pd and graphene electronic states strongly binds Pd atoms to graphene surface, inducing chemisorption of the adsorbate. The adsorption energies of Pd atom and its dimer have been found to be -1.43 eV and -2.27 eV, respectively. Furthermore symmetry breaking of the graphene structure, due to the Pd/Pd-2-decoration, leads to opening a band gap, bringing graphene from semimetalic to semiconducting state. In the presence of methane molecule, the electronic band gap of Pd-decorated graphene is increased from 73 meV to 90 meV, while for Pd dimer it is decreased from 185 meV to 55 meV. As a result, compared to Pd-decorated graphene, Pd-2-decorated graphene has a stronger interaction with the methane molecule and may provide a more sensitive signal for methane gas detection.
机译:本文利用色散校正密度泛函理论(DFT-D-2),研究了由单个钯(Pd)原子及其二聚体(Pd-2)装饰的石墨烯对甲烷(CH4)的吸附能力。根据状态密度,能带结构和电荷转移,计算了吸附能,最佳几何形状和电子结构。我们的结果表明,范德华相互作用导致CH4在原始石墨烯上的物理吸附,其吸附能为-112 meV,接近其实验值。计算还表明,Pd和石墨烯电子态的杂化将Pd原子牢固地结合到石墨烯表面,从而诱导被吸附物的化学吸附。已经发现,Pd原子及其二聚体的吸附能分别为-1.43 eV和-2.27 eV。此外,由于Pd / Pd-2-修饰,石墨烯结构的对称破坏导致打开带隙,使石墨烯从半金属态转变为半导体态。在甲烷分子的存在下,Pd装饰的石墨烯的电子带隙从73 meV增加到90 meV,而Pd二聚体的电子带隙从185 meV减少到55 meV。结果,与Pd装饰的石墨烯相比,Pd-2-装饰的石墨烯与甲烷分子具有更强的相互作用,并且可以为甲烷气体检测提供更灵敏的信号。

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