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Matrix Isolation Infrared Spectroscopic and Theoretical Study of the Interaction of Water with Dimethyl Methylphosphonate

机译:基质分离红外光谱与水与甲基膦酸二甲酯相互作用的理论研究

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摘要

Matrix isolation infrared spectroscopy has been combined with theoretical calculations for the characterization of the 1:1 hydrogen-bonded complex between H2O and dimethyl methylphosphonate (DMMP). The symmetric O-H stretching mode was observed to shift 203 cm-1 to lower energy upon hydrogen bond formation, while a 32 cm-1 blue shift was noted for the H-O-H bending mode of the H2O subunit in the complex. These values compare extremely well with the (unscaled) shifts of -203 and +32 cm-1, respectively, that were calculated theoretically at the MP2/6-31+G** level. Additional perturbed modes of the DMMP subunit were observed, shifted relative to the parent band position. The greatest perturbation was to the P=O stretching mode near 1270 cm-1, where a shift of -17 cm-1 was observed (-21 cm-1 calculated theoretically). This suggests that the site of hydrogen bonding in the complex is at the P=O group, in agreement with theoretical calculations. The binding energy ΔE° for the 1:1 complex was calculated to be -7.7 kcal/mol.
机译:基质隔离红外光谱已与理论计算相结合,用于表征H2O和甲基膦酸二甲酯(DMMP)之间的1:1氢键配合物。观察到对称的O-H拉伸模式在形成氢键后移动203 cm-1以降低能量,而复合物中H2O亚基的H-O-H弯曲模式则观察到32 cm-1的蓝移。这些值分别与理论上在MP2 / 6-31 + G **级别上计算出的-203和+32 cm-1的(无标度)位移相比非常好。观察到DMMP亚基的其他扰动模式,相对于父带位置发生了偏移。最大的扰动是在1270 cm-1附近的P = O拉伸模式,其中观察到-17 cm-1的位移(理论上计算为-21 cm-1)。这表明与理论计算相符,络合物中氢键的位点在P = O基团上。 1:1配合物的结合能ΔE°经计算为-7.7kcal / mol。

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