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O2 Adsorption on Defective Penta-Graphene Lattices

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arxiv 2007.12224 v1 pith:Y7U7MPQJ submitted 2020-07-23 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords latticesadsorptiondefectivemoleculepenta-graphenepresentedpropertiessp3-like
verification ladder T0 review T1 audit T2 compute T3 formal

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Penta-Graphene (PG) was theoretically proposed as a new carbon allotrope with a 2D structure. PG has revealed interesting gas sensing properties. Here, the structural and electronic properties of defective PG lattices interacting with an oxygen molecule were theoretically studied by employing density functional theory calculations. Results show that PG lattices with a sp3-like single-atom vacancy presented higher adsorption energy than the sp2-like one. Remarkably, PG lattices with a sp3-like defect presented a clear degree of selectivity for the molecule orientation by changing their bandgap configurations. Importantly, the adsorption energies were obtained using the improved Lennard-Jones (ILJ) potential.

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