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Data related to conformation dependence of tyrosine binding on the surface of graphene: Bent prefers over parallel orientation

机译:与酪氨酸结合在石墨烯表面上的构象依赖性有关的数据:Bent优先于平行取向

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摘要

In this data article, M06-2X/6-31G(d) level optimized geometries of complexes of tyrosine conformers binding with graphene sheets are shown in top and side views with selected non-bonding distances. The images of frontier molecular orbitals from HOMO-15 to LUMO+15 of the complexes involving graphene with tyrosine conformers are presented and the isovalue is 0.003 au. For some complexes involving small graphene, the orbitals are from HOMO-5 to LUMO+5. The molecular orbitals highlighted with frames show obvious overlaps between the fragments. Total energies of small and large graphene (>G>S and >G>L) and selected tyrosine conformers in gas and aqueous phases obtained at M06-2X/6-31G(d) level are given. The data also include total energies of all complexes in the gas phase and the aqueous phase, binding energies, BSSE (basis set superposition error) correction, and BSSE-corrected binding energies in gas phase and solvation effect on the binding energies obtained at M06-2X/6-31G(d) level. Mulliken charges of tyrosine conformers in gas and aqueous phases, and the deformation energy for tyrosine and graphene in the gas phase complexes are provided. The values of the highest occupied molecular orbital (HOMO), the lowest unoccupied molecular orbital (LUMO) and HOMO-LUMO energy gaps for some of graphene-tyrosine complexes that were not reported in the article [1] are given. The data is related to the research article “Conformation dependence of tyrosine binding on the surface of graphene: Bent prefers over parallel orientation” [1].
机译:在此数据文章中,在俯视图和侧视图中以选定的非粘结距离显示了酪氨酸构象异构体与石墨烯片结合的M06-2X / 6-31G(d)级优化几何结构。提出了从石墨烯与酪氨酸构象异构体的复合物的HOMO-15到LUMO + 15的前沿分子轨道的图像,其等值为0.003 au。对于一些涉及小的石墨烯的配合物,其轨道是从HOMO-5到LUMO + 5。用框突出显示的分子轨道显示出片段之间明显的重叠。大小石墨烯(> G > S 和> G > L )的总能量以及在气体和水溶液中选择的酪氨酸构象异构体给出了在M06-2X / 6-31G(d)级别获得的相位。数据还包括气相和水相中所有配合物的总能,结合能,BSSE(基集叠加误差)校正,以及BSSE校正的气相结合能以及溶剂化对在M06-处获得的结合能的影响2X / 6-31G(d)级。提供了气相和水相中酪氨酸构象异构体的Mulliken电荷,以及气相络合物中酪氨酸和石墨烯的变形能。给出了本文[1]中未报道的一些石墨烯-酪氨酸配合物的最高占据分子轨道(HOMO),最低未占据分子轨道(LUMO)和HOMO-LUMO能隙的值。该数据与研究论文“石墨烯表面酪氨酸结合的构象依赖性:弯曲比平行取向更重要” [1]。

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