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Graphene oxide and nanodiamond: same carboxylic groups, different complexation properties

机译:氧化石墨烯和纳米金刚石:相同的羧基,不同的络合特性

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DFT calculations (PBE functional with the empirical correction by Grimme) were employed to explain why our attempts to coordinatively functionalize nanodiamond (ND) with tetraazamacrocyclic cations [Ni(cyclam)]2+ and [Ni(tet b)]2+, and to generate paramagnetic hybrid materials in this way, failed, contrary to the successful functionalization of graphene oxide (GO) reported previously (Appl. Surf. Sci., 2016, 371, 16–27). The explanation offered is based on the comparison of binding energies for low-spin (singlet) and high-spin (triplet) complexes of model carboxylate ions GO? and ND? with the two tetraazamacrocycles. The formation energies were interpreted in terms of ΔΔE3?1 values, which characterize the difference in stability for the triplet and singlet complexes (negative values mean that triplet state is more stable, and positive, that singlet state is more stable). While the results obtained do not rule out completely the possibility of forming high-spin [Ni(cyclam)]2+ carboxylate derivatives on ND, in the case of [Ni(tet b)]2+ comparison of the ΔΔE3?1 values explicitly demonstrated that the formation of high-spin complex is highly unfavorable with ND? contrary to GO? model: ΔΔE3?1 values obtained are 13.22 and ?4.64 kcal mol?1, respectively. For comparison, similar data are presented for a series of simpler carboxylates. In addition to binding energies and ΔΔE3?1 values, for all the systems studied we analyzed Ni–O distances, spin density plots and HOMO?LUMO parameters.
机译:使用DFT计算(由Grimme进行经验校正的PBE功能)来解释为什么我们试图与四氮杂大环阳离子[Ni(cyclam)] 2 + 和[Ni(tet b )] 2 + 并以这种方式生成顺磁性杂化材料失败,与功能化成功相反先前报道的氧化石墨烯(GO)含量( Appl。Surf。Sci。,2016,371,16–27)。提供的解释是基于模型羧酸根离子GO 和ND ,带有两个四氮杂大环。用ΔΔ E 3?1 值解释形成能,该值表征了三重态和单重态络合物的稳定性差异(负值)值表示三重态更稳定,而正数表示单重态更稳定)。尽管获得的结果并不能完全排除在ND上形成高自旋[Ni(cyclam)] 2 + 羧酸盐衍生物的可能性,但对于[Ni( tet b )] 2 + 比较ΔΔ E 3?1 值明确表明,与GO 不利于高自旋复合物的形成。 > 模型:获得的ΔΔ E 3?1 值为13.22和?4.64 kcal mol ?1 。为了进行比较,给出了一系列简单羧酸盐的相似数据。除了结合能和ΔΔ E 3?1 值外,对于所有研究的系统,我们还分析了Ni–O距离,自旋密度图和HOMO?LUMO参数。

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