首页> 外文期刊>Journal of the American Chemical Society >VIBRATIONAL OPTICAL ACTIVITY OF (3S,6S)-3,6-DIMETHYL-1,4-DIOXANE-2,5-DIONE
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VIBRATIONAL OPTICAL ACTIVITY OF (3S,6S)-3,6-DIMETHYL-1,4-DIOXANE-2,5-DIONE

机译:(3S,6S)-3,6-二甲基-1,4-二恶烷-2,5-二酮的振动光学活性

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Vibrational circular dichroism (VCD), absorption, Raman, and Raman optical activity (ROA) spectra for the title compound, a cyclic dimer, were measured in non-aqueous solution. The vibrational normal modes are assigned based on the result from ab initio force field calculation. Harmonic frequencies and atomic polar tensors for simulation of IR absorption were calculated both on the (Hartree-Fock SCF) HF/6-31G** level and using density functional theory (DFT) methods with the Becke3/LYP hybrid functional. Magnetic transition dipole derivatives were calculated on the HF/6-31G level, and the ROA polarizability tensors were calculated on the HF/4-31G level. Excellent agreement between the DFT calculated and experimental frequencies was obtained without a need for scaling. Furthermore, using the DFT force field, the correct VCD sign and intensity patterns were reproduced as compared to the experimental mid-IR spectra. Reasonable near-IR VCD and mid-IR ROA sign patterns for the intense peaks were also calculated. The excellent agreement for the mid-IR VCD results shows that medium-sized, biologically relevant molecules can have their spectra simulated using quantum mechanical techniques to a high level, certainly one suitable for conformational analyses by direct comparison of theory to experimental results. Comparison of DFT and HF level calculations suggests that the improvement found using DFT methods is primarily due to the force field and not to the intensity parameters. DFT atomic polar tensors were systematically weaker than the HF generated ones. Weak coupling between the subunits of this dimer implies dominance by local interactions which suggests that useful extension of these calculational techniques to larger oligomers might be accomplished by transfer of parameters.
机译:在非水溶液中测量了标题化合物(环状二聚体)的振动圆二色性(VCD),吸收,拉曼和拉曼光学活性(ROA)光谱。振动法线模式是根据从头算力场计算得出的结果分配的。在(Hartree-Fock SCF)HF / 6-31G **水平上以及使用具有Becke3 / LYP混合功能的密度泛函理论(DFT)方法,计算了用于模拟IR吸收的谐波频率和原子极性张量。在HF / 6-31G水平上计算了磁跃迁偶极导数,在HF / 4-31G水平上计算了ROA极化率张量。 DFT计算频率与实验频率之间获得了极好的一致性,而无需进行缩放。此外,与实验中红外光谱相比,使用DFT力场,可以再现正确的VCD信号和强度模式。还计算了强烈峰值的合理的近红外VCD和中红外ROA符号模式。中红外VCD结果的极好的一致性表明,可以使用量子力学技术对中型生物学相关分子进行高光谱模拟,通过理论与实验结果的直接比较,可以肯定这种分子适合进行构象分析。 DFT和HF水平计算的比较表明,使用DFT方法发现的改进主要是由于力场而不是强度参数。 DFT原子极张量在系统上比HF生成的张量弱。该二聚体的亚基之间的弱偶联意味着通过局部相互作用占优势,这表明这些计算技术对较大的低聚物的有用扩展可以通过传递参数来实现。

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