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Chemisorption of 4-(4-amino-phenylazo) benzoic acid molecule on the Si(001)-(4 × 2) surface

机译:Si(001)-(4×2)表面上的4-(4-氨基-苯基偶氮)苯甲酸分子的化学吸附

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摘要

Structural and electronic properties of self-assembled monolayer with 4-(4-amino-phenylazo) benzoic acid (APABA) on the Si(001)-(4 × 2) surface are investigated by ab initio calculation based on density functional theory. For the APABA chemisorption on the silicon surface, we have assumed two different binding sites: (i) amino group of molecule and (ii) carboxyl group of molecule. Considering amino-site, we have assumed two possible models for the chemisorption of molecules on the Si(001)-(4 × 2) surface: (i) an intrarow position between two neighboring Si dimers in the same dimer row (Model I), (ii) on-dimer position (Model II). We have found that Model II is 1.10 eV energetically more favorable than Model I. The Si-N bond length was calculated as 1.85 A which is in excellent agreement with the sum of the corresponding covalent radii of 1.87 A. Considering carboxyl-site, we have assumed exactly the same model as mentioned above. Again we have found that Model II is energetically favorable than Model I. The calculated bond lengths for Si-O and O-C are 1.76 and 1.35 A, respectively.
机译:通过基于密度泛函理论的从头计算,研究了在Si(001)-(4×2)表面上带有4-(4-氨基-苯基偶氮)苯甲酸(APABA)的自组装单分子膜的结构和电子性能。对于硅表面上的APABA化学吸附,我们假设了两个不同的结合位点:(i)分子的氨基和(ii)分子的羧基。考虑到氨基位点,我们假设了两个可能的分子在Si(001)-(4×2)表面化学吸附的模型:(i)同一二聚体行中两个相邻的Si二聚体之间的行内位置(模型I) ,(ii)二聚体位置(模型II)。我们发现,模型II在能量上比模型I更有利于1.10 eV。计算得出的Si-N键长为1.85 A,与相应的共价半径之和1.87 A非常吻合。考虑到羧基位,假设与上述模型完全相同。再次,我们发现II型在能量上优于I型。计算得出的Si-O和O-C的键长分别为1.76和1.35A。

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