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Tuning of the electronic properties of H-passivated armchair graphene nanoribbons by mild border oxidation: Theoretical study on periodic models

机译:H钝化扶手椅石墨烯纳米带的电子特性通过温和边界氧化的调节:周期模型的理论研究

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We report the results of a DFT study of the electronic properties, intended as highest occupied molecular orbital (HOMO) and lowest unoccupied molecular orbital (LUMO) energies, of periodic models of H-passivated armchair graphene nanoribbons (a-GNRs) as that synthetized by bottom-up technique, functionalized by vicinal dialdehydic groups. This material can be obtained by border oxidation in mild and easy to control conditions with (1)(g) O-2 as we reported in our previous paper (Ghigo et al., ChemPhysChem 2015, 16, 3030). The calculations show that the two models of border oxidized a-GNRs (model A, 0.98 nm and model B, 1.35 nm wide) present LUMO and HOMO energies lowered by an extend roughly linearly dependent on the amount of oxygen chemically bound. The frontier orbital energy variations dependence on the % wt of oxygen bound are, for model A: -0.12 eV for the LUMO and -0.05 eV for the HOMO; for model B: -0.15 eV (HOMO) and -0.06 eV (LUMO). (c) 2016 Wiley Periodicals, Inc.
机译:我们报告了DFT研究的电子特性的结果,该电子特性被设计为H钝化扶手椅石墨烯纳米带(a-GNR)周期模型的最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)能量通过自下而上的技术,由邻近的二醛基团实现功能化。如我们在之前的论文中所报道的(Ghigo等人,ChemPhysChem 2015,16,3030),可以在(1)(g)O-2的温和且易于控制的条件下通过边界氧化获得该材料。计算表明,边界氧化的a-GNR的两个模型(模型A,0.98 nm和模型B,1.35 nm宽)呈现出的LUMO和HOMO能量根据化学键合的氧气量大致呈线性降低。对于模型A,边界轨道能量变化取决于结合的氧的%wt的值:LUMO为-0.12 eV,HOMO为-0.05 eV;对于模型B:-0.15 eV(HOMO)和-0.06 eV(LUMO)。 (c)2016年威利期刊有限公司

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