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Structure and Energetics of the Weakly Bound NH_3...H_2O Complex

机译:弱束缚NH_3 ... H_2O配合物的结构和能量学

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摘要

Optimal structures, interaction energies, and harmonic vibrational frequencies of the NH_3...H_2O complex have been determined from the second-order Moller-Plesset perturbation theory and DFT/B3PW91 calculations with the aug-cc-pVTZ basis set. Some properties of the complex have been calculated at the MP4 and CCSD-(T) levels. The tunneling motion of the water molecule around its c inertial axis was studied, and the barrier to the exchange of the bound and free hydrogen atoms was determined as 1267 cm~(-1). The nature of the intermolecular interactions in the complex was investigated by symmetry-adapted perturbation theory (SAPT). As revealed by the SAPT analysis the main binding contributions are the electrostatic and induction components. The calculations of the vibrational frequencies and infrared intensities for this complex are presented to facilitate the frequency assignments of the experimental spectra.
机译:NH_3 ... H_2O配合物的最佳结构,相互作用能和谐波振动频率已根据二阶Moller-Plesset微扰理论和采用aug-cc-pVTZ基集的DFT / B3PW91计算确定。该复合物的某些特性已在MP4和CCSD-(T)级别上进行了计算。研究了水分子绕其惯性轴的隧穿运动,确定了结合氢和自由氢原子交换的障碍为1267 cm〜(-1)。通过对称自适应扰动理论(SAPT)研究了复合物中分子间相互作用的性质。正如SAPT分析所揭示的,主要的结合贡献是静电和感应成分。提出了对该复合物的振动频率和红外强度的计算,以方便实验光谱的频率分配。

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