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Electronic and transport properties of chemically functionalised zig-zag graphene nanoribbons: First principle study

机译:化学官能化之曲石墨烯纳米沥青的电子和运输特性:第一原理研究

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In this work, we have performed the chemical functionalisation of metallic graphene nanoribbons (GNRs) with different functional groups. The analysis of graphene in terms of relative stability and electronic properties has been done. The HOMO–LUMO gaps are quantitatively analysed to reveal the influence of different functional groups including hydroxyl, carboxyl and hydrogen sulphide groups. Interestingly, the influence of edge functionalisation on the HOMO–LUMO gap of zig-zag graphene nanoribbons (ZGNRs) presents significant change using density functional theory (DFT). Understanding the electronic properties in terms of density of states and band structure of functionalised graphene is of great relevance today. It is found that the geometrical structures and electronic properties of the GNRs could be significantly changed with the oxygen containing group. With the carboxyl-functionalised GNRs, the interaction leads to a decrement in the HOMO–LUMO gap of graphene. This fact makes GNR a possible candidate for nanoelectronic devices.
机译:在这项工作中,我们已经用不同的官能团进行了金属石墨烯纳米波氏(GNRS)的化学功能。已经完成了关于相对稳定性和电子性质的石墨烯的分析。定量分析同性恋间隙以揭示不同官能团,包括羟基,羧基和硫化氢基团的影响。有趣的是,边缘函数对Zig-Zag石墨烯纳米(ZGNRS)的Homo-Lumo间隙的影响呈现了使用密度函数理论(DFT)的显着变化。理解在功能化石墨烯的状态和带结构的密度方面的电子特性具有很大的相关性。结果发现,通过含氧基团可以显着改变GNR的几何结构和电子性质。利用羧基官能化的GNRS,相互作用导致石墨烯的HOMO-LUMO间隙的减少。这一事实使GNR成为纳米电子器件的可能候选者。

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