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首页> 外文期刊>Journal of molecular modeling >Calculating the geometry and Raman spectrum of physiological bis(L-histidinato)copper(II): an assessment of DFT functionals for aqueous and isolated systems
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Calculating the geometry and Raman spectrum of physiological bis(L-histidinato)copper(II): an assessment of DFT functionals for aqueous and isolated systems

机译:计算生理双(L-组氨酸)铜(II)的几何和拉曼光谱:水性和隔离系统DFT官能的评估

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Reliable density functional theory (DFT) calculations can be performed in conjuction with spectroscopic measurements to elucidate the structural properties of physiologically important bis(amino acidato)copper(II) compounds in solutions. They can provide insight into the influence of intermolecular interactions on the molecular geometry in the crystal lattice or solution when compared with a DFT gas-phase minimum. Our previous paper [Markovic et al. (2014) Eur J Inorg Chem 198] reported the DFT-determined geometries and Raman spectra for different conformers of physiological bis(L-histidinato)copper(II) with 20 explicit water molecules, as calculated using the B3LYP functional. The present study examined the reliability of those B3LYP results by applying the M06 functional instead, as it should better account for noncovalent interactions. The water molecules were positioned more compactly around the complex by M06 than by B3LYP. The accuracies of the two functionals when compared to relevant experimental data showed that M06 was better at reproducing in-plane Cu-N bond lengths but B3LYP gave more accurate axial Cu-O distances. Both functionals reproduced the experimental Raman spectrum at pH 8 to similar levels of accuracy and provided precise information on the Cu(II) coordination mode and conformation in aqueous solution. Additionally, we assessed several DFT and DFT-D functionals (BP86, B3LYP, B3LYP-D, M06, M06 L, wB97XD, mPW2PLYPD) by using them to model the geometries of experimental bis(L-histidinato)copper(II) crystalline conformations as isolated systems, and then benchmarking the results against those from high-level second-order pertubation Moller-Plesset (MP2) calculations. Although this assessment resulted in an equivocal conclusion because the MP2 results for the isolated complex were inconsistent with the corresponding DFT outcomes, it does provide new information on future benchmark options.
机译:可靠的密度函数理论(DFT)计算可以用光谱测量和光谱测量的结合进行,以阐明溶液中生理学上重要的双(氨基酸)铜(II)化合物的结构性质。它们可以在与DFT气相最小相比时提供对晶格或溶液中分子几何体的分子几何体的影响。我们之前的论文[Markovic等人。 (2014年)EUR J Inorg Chem 198]报道了使用B3LYP功能计算的20例明确水分子的不同塑造剂的DFT确定的几何形状和拉曼光谱,如使用B3LYP官能的计算。本研究通过应用M06功能来检查这些B3LYP结果的可靠性,因为它应该更好地占非共价相互作用。水分子通过M06围绕复合物围绕复合物致密地定位而不是B3Lyp。与相关实验数据相比,两种功能的精度显示M06在再现平面内Cu-N键长度,但B3LYP在更精确的轴向Cu-O距离上。这两种功能在pH8中再现了PH8的实验拉曼光谱到类似的精度水平,并提供了关于Cu(II)配位模式和在水溶液中的构象的精确信息。此外,我们通过使用它们来评估几种DFT和DFT-D功能(BP86,B3LYP,B3LYP-D,M06,M06 L,WB97XD,M06,M0PLYPD)以模拟实验性BIS(L-组氨酸)铜(II)结晶符合物的几何形状作为孤立的系统,然后将结果基准测试对来自高级二阶汞莫尔 - Plesset(MP2)计算的结果。虽然这种评估导致了一个等常数的结论,因为孤立复杂的MP2结果与相应的DFT结果不一致,但它确实提供了关于未来基准选项的新信息。

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