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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Hydrogen bonding in protic ionic liquids: structural correlations, vibrational spectroscopy, and rotational dynamics of liquid ethylammonium nitrate
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Hydrogen bonding in protic ionic liquids: structural correlations, vibrational spectroscopy, and rotational dynamics of liquid ethylammonium nitrate

机译:氢粘合在质子离子液体中:液态乙基硝酸铵的结构相关性,振动光谱和旋转动力学

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摘要

The properties of the hydrogen bonds in ethylammonium nitrate (EAN) are analyzed by using molecular dynamics simulations and infrared as well as nuclear magnetic resonance experiments. EAN features a flexible three-dimensional network of hydrogen bonds with moderate strengths, which makes it distinct from related triethylammonium-based ionic liquids. First, the network's flexibility is manifested in a not very pronounced correlation of the hydrogen bond geometries, which is caused by rapid interchanges of bonding partners. The large flexibility of the network also leads to a substantial broadening of the mid-IR absorption band, with the contributions due to N-H stretching motions ranging from 2800 to 3250. cm(-1). Finally, the different dynamics are also seen in the rotational correlation of the N-H bond vector, where a correlation time as short as 16.1. ps is observed.
机译:通过使用分子动力学模拟和红外线以及核磁共振实验,分析硝酸铵(EAn)中氢键的性质。 EAN具有柔性三维网络,具有中等强度,使其不同于相关的三乙基铵基离子液体。 首先,网络的灵活性表现在氢键几何形状的不是非常明显的相关性中,这是由粘接伴侣的快速交互引起的。 网络的巨大灵活性还导致中红外吸收带的大大宽,由于N-H拉伸运动的贡献范围为2800至3250.cm(-1)。 最后,在N-H键载体的旋转相关性中也看到了不同的动态,其中相关时间短至16.1。 PS被观察到。

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