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首页> 外文期刊>The Journal of Chemical Physics >Probing the global potential energy minimum of (CH2O)(2): THz absorption spectrum of (CH2O)(2) in solid neon and para-hydrogen
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Probing the global potential energy minimum of (CH2O)(2): THz absorption spectrum of (CH2O)(2) in solid neon and para-hydrogen

机译:探测(CH2O)(2)(2)的全球势能最小值:(CH 2 O)(2)中的固体氖和氢气的吸收光谱

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摘要

The true global potential energy minimum configuration of the formaldehyde dimer (CH2O)(2), including the presence of a single or a double weak intermolecular CH center dot center dot center dot center dot O hydrogen bond motif, has been a long-standing subject among both experimentalists and theoreticians as two different energy minima conformations of C-s and C-2h symmetry have almost identical energies. The present work demonstrates how the class of large-amplitude hydrogen bond vibrational motion probed in the THz region provides excellent direct spectroscopic observables for these weak intermolecular CH center dot center dot center dot O hydrogen bond motifs. The combination of concentration dependency measurements, observed isotopic spectral shifts associated with H/D substitutions and dedicated annealing procedures, enables the unambiguous assignment of three large-amplitude infrared active hydrogen bond vibrational modes for the non-planar C-s configuration of (CH2O)(2) embedded in cryogenic neon and enriched parahydrogen matrices. A (semi)-empirical value for the change of vibrational zero-point energy of 5.5 +/- 0.3 kJ mol(-1) is proposed for the dimerization process. These THz spectroscopic observations are complemented by CCSD(T)-F12/aug-cc-pV5Z (electronic energies) and MP2/aug-cc-pVQZ (force fields) electronic structure calculations yielding a (semi)-empirical value of 13.7 +/- 0.3 kJ mol(-1) for the dissociation energy D-0 of this global potential energy minimum. Published by AIP Publishing.
机译:甲醛二聚体(CH2O)(2)的真正全球势能最小构型,包括单个或双弱分子CH中心点中心点中心点中心点氢粘合基序一直是长期主题在实验主义者和理论者中,作为两个不同的能量最小化的CS和C-2H对称性的构象具有几乎相同的能量。本作者演示了THz区域中探测的大振幅氢键振动运动的类别提供了优异的直接光谱可观察,用于这些弱分子CH中心点中心点中心点O氢键键。浓度依赖性测量的组合,观察到与H / D替换和专用退火程序相关的同位素光谱移位,使得用于(CH2O)的非平面CS配置的三个大幅度红外活性氢键振动模式的明确分配(2 )嵌入低温氖和富集的戊二糖基质中。提出了5.5 +/- 0.3kJMOL(-1)的振动零点能量变化的(半) - 用于二聚化方法。这些THz光谱观测由CCSD(T)-F12 / AUG-CC-PV5Z(电子能)和MP2 / AUG-CC-PVQZ(Force Fields)电子结构计算互补,得到(半) - 二维象限值13.7 + / - 0.3 kJ mol(-1)对于这种全球潜在能量的解离能量D-0最小。通过AIP发布发布。

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