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Structures, vibrational frequencies, topologies, and energies of hydrogen bonds in cysteine-formaldehyde complexes

机译:半胱氨酸-甲醛复合物中氢键的结构,振动频率,拓扑结构和能量

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The hydrogen bonding interactions between cysteine (Cys) and formaldehyde (FA) were studied with density functional theory regarding their geometries, energies, vibrational frequencies, and topological features of the electron density. The quantum theory of atoms in molecules and natural bond orbital analyses were employed to elucidate the interaction characteristics in the Cys-FA complexes. The intramolecular hydrogen bonds (H-bonds) formed between the hydroxyl and the N atom of cysteine moiety in some Cys-FA complexes were strengthened because of the cooperativity. Most of intermolecular H-bonds involve the O atom of cysteine/FA moiety as proton acceptors, while the strongest H-bond involves the O atom of FA moiety as proton acceptor, which indicates that FA would rather accept proton than providing one. The H-bonds formed between the CH group of FA and the S atom of cysteine in some complexes are so weak that no hydrogen bonding interactions exist among them. In most of complexes, the orbital interaction of H-bond is predominant during the formation of complex. The electron density (ρb) and its Laplace (?~2ρb) at the bond critical point significantly correlate with the H-bond parameter δR, while a linearly relationship between the second-perturbation energy E(2) and ρb has been found as well.
机译:利用密度泛函理论研究了半胱氨酸(Cys)和甲醛(FA)之间的氢键相互作用,包括它们的几何形状,能量,振动频率以及电子密度的拓扑特征。分子中的原子量子理论和自然键轨道分析被用来阐明Cys-FA配合物中的相互作用特征。在某些Cys-FA配合物中,半胱氨酸部分的羟基和N原子之间形成的分子内氢键(H键)得到增强。分子间的大多数氢键涉及半胱氨酸/ FA部分的O原子作为质子受体,而最强的氢键涉及FA部分的O原子作为质子受体,这表明FA宁愿接受质子而不提供质子。在某些配合物中,FA的CH基与半胱氨酸的S原子之间形成的H键太弱,以至于它们之间不存在氢键相互作用。在大多数配合物中,氢键的轨道相互作用在配合物形成过程中占主导地位。键临界点处的电子密度(ρb)及其拉普拉斯(?〜2ρb)与H键参数δR显着相关,而第二摄动能量E(2)与ρb之间也存在线性关系。

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