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Intermolecular interactions between gold clusters and selected amino acids cysteine and glycine: a DFT study

机译:金簇与选定的氨基酸半胱氨酸和甘氨酸之间的分子间相互作用:DFT研究

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The intermolecular interactions between Au _n (n = 3-4) clusters and selected amino acids cysteine and glycine have been investigated by means of density functional theory (DFT). Present calculations show that the complexes possessing Au-NH _2 anchoring bond are found to be energetically favored. The results of NBO and frontier molecular orbitals analysis indicate that for the complex with anchoring bonds, lone pair electrons of sulfur, oxygen, and nitrogen atoms are transferred to the antibonding orbitals of gold, while for the complex with the nonconventional hydrogen bonds (Au···H-O), the lone pair electrons of gold are transferred to the antibonding orbitals of O-H bonds during the interaction. Furthermore, the interaction energy calculations show that the complexes with Au-NH _2 anchoring bond have relatively high intermolecular interaction energy, which is consistent with previous computational studies.
机译:Au_n(n = 3-4)簇与选定的氨基酸半胱氨酸和甘氨酸之间的分子间相互作用已通过密度泛函理论(DFT)进行了研究。目前的计算表明,发现具有能量优势的具有Au-NH _2锚定键的配合物。 NBO和前沿分子轨道分析的结果表明,对于具有锚定键的配合物,硫,氧和氮原子的孤对电子被转移到金的反键轨道上,而对于具有非常规氢键的配合物(Au· ··HO),在相互作用过程中,金的孤对电子转移到OH键的反键轨道上。此外,相互作用能的计算表明,具有Au-NH _2锚定键的配合物具有较高的分子间相互作用能,这与以前的计算研究一致。

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