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Polar isomer of formic acid dimers formed in helium nanodroplets

机译:氦纳米液滴中形成的甲酸二聚体的极性异构体

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The infrared spectrum of formic acid dimers in helium nanodroplets has been observed corresponding to excitation of the "free" OH and CH stretches.The experimental results are consistent with a polar acyclic structure for the dimer.The formation of this structure in helium,as opposed to the much more stable cyclic isomer with two O-H...O hydrogen bonds,is attributed to the unique growth conditions that exist in helium droplets,at a temperature of 0.37 K.Theoretical calculations are also reported to aid in the interpretation of the experimental results.At long range the intermolecular interaction between the two monomers is dominated by the dipole-dipole interaction,which favors the formation of a polar dimer.By following the minimum-energy path,the calculations predict the formation of an acyclic dimer having one O-H...O and one C-H...O contact.This structure corresponds to a local minimum on the potential energy surface and differs significantly from the structure observed in the gas phase.
机译:观察到氦纳米液滴中甲酸二聚体的红外光谱对应于“游离” OH和CH链段的激发。实验结果与二聚体的极性无环结构相符。在氦中这种结构的形成与相反归因于具有两个OH ... O氢键的更稳定的环状异构体,归因于氦液滴在0.37 K的温度下存在的独特生长条件。据报道理论计算也有助于解释实验在长距离范围内,两种单体之间的分子间相互作用受偶极-偶极相互作用的支配,这有利于形成极性二聚体。通过遵循最小能量路径,计算预测了具有一个OH的无环二聚体的形成... O和一个CH ... O接触。此结构对应于势能表面上的局部最小值,与气体中观察到的结构明显不同相。

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