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首页> 外文期刊>The Journal of Chemical Physics >X-ray diffraction and inelastic neutron scattering study of 1 : 1 tetramethylpyrazine chloranilic acid complex: temperature, isotope, and pressure effects
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X-ray diffraction and inelastic neutron scattering study of 1 : 1 tetramethylpyrazine chloranilic acid complex: temperature, isotope, and pressure effects

机译:1:1四甲基吡嗪氯苯甲酸络合物的X射线衍射和非弹性中子散射研究:温度,同位素和压力效应

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The x-ray diffraction studies of the title complex were carried out at room temperature and 14 K for H/D (in hydrogen bridge) isotopomers. At 82 K a phase transition takes place leading to a doubling of unit cells and alternation of the hydrogen bond lengths linking tetramethylpyrazine (TMP) and chloranilic acid molecules. A marked H/D isotope effect on these lengths was found at room temperature. The elongation is much smaller at 14 K. The infrared isotopic ratio for O-H(D)center dot N bands equals to 1.33. The four tunnel splittings of methyl librational ground states of the protonated complex required by the structure are determined at a temperature T=4.2 K up to pressures P=4.7 kbars by high resolution neutron spectroscopy. The tunnel mode at 20.6 mu eV at ambient pressure shifts smoothly to 12.2 mu eV at P=3.4 kbars. This is attributed to an increase of the strength of the rotational potential proportional to r(-5.6). The three other tunnel peaks show no or weak shifts only. The increasing interaction with diminishing intermolecular distances is assumed to be compensated by a charge transfer between the constituents of delta e/e similar to 0.02 kbar(-1). The phase transition observed between 3.4 and 4.7 kbars leads to increased symmetry with only two more intense tunneling bands. In the isotopomer with deuterated hydrogen bonds and P=1 bar all tunnel intensities become equal in consistency with the low temperature crystal structure. The effect of charge transfer is confirmed by a weakening of rotational potentials for those methyl groups whose tunnel splittings were independent of pressure. Density functional theory calculations for the model TMP center dot(HF)(2) complex and fully ionized molecule TMP+ point out that the intramolecular rotational potential of methyl groups is weaker in the charged species. They do not allow for the unequivocal conclusions about the role of the intermolecular charge transfer effect on the torsional frequencies. (c) 2006 American Institute of Physics.
机译:标题配合物的X射线衍射研究在室温和14 K的H / D(在氢桥中)异位异构体中进行。在82 K时发生相变,导致晶胞倍增,连接四甲基吡嗪(TMP)和氯苯甲酸分子的氢键长度发生变化。在室温下发现了这些长度上明显的H / D同位素效应。伸长率在14 K时小得多。O-H(D)中心点N波段的红外同位素比等于1.33。通过高分辨率中子光谱法在温度T = 4.2 K到压力P = 4.7 kbar的条件下确定了结构所需的质子化复合物的甲基释放基态的四个隧道分裂。在P = 3.4 kbars下,在环境压力为20.6μeV时的隧道模式平稳地移动到12.2μeV。这归因于与r(-5.6)成正比的旋转电势强度的增加。其他三个隧道峰没有或仅显示出微弱的位移。分子间距离越小,相互作用越强,可以认为是由δe / e的各组分之间的电荷转移(与0.02 kbar(-1)相似)所补偿。在3.4和4.7 kbar之间观察到的相变会导致对称性增加,而只有两个更强的隧穿带。在具有氘化氢键和P = 1 bar的同位异构体中,所有隧道强度与低温晶体结构一致而相等。对于那些其隧道裂口与压力无关的甲基,旋转电位的减弱证实了电荷转移的效果。对模型TMP中心点(HF)(2)络合物和完全电离的分子TMP +的密度泛函理论计算指出,在带电物种中,甲基的分子内旋转势较弱。他们不能得出关于分子间电荷转移效应对扭转频率的作用的明确结论。 (c)2006年美国物理研究所。

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