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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Electric Field Effect on Condensed-Phase Molecular Systems. VII. Vibrational Stark Sensitivity of Spatially Oriented Water Molecules in an Argon Matrix
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Electric Field Effect on Condensed-Phase Molecular Systems. VII. Vibrational Stark Sensitivity of Spatially Oriented Water Molecules in an Argon Matrix

机译:冷凝相分子系统的电场影响。 VII。 氩气矩阵中空间取向水分子的振动凝固敏感性

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The susceptibility of a water molecule to electric fields provides fundamental and essential information for understanding the vibrational spectra of water clusters and condensed-phase water. In this study, the Stark sensitivities for the nu(2), bending and nu(1) symmetric stretching vibrations of water molecule were experimentally determined. The water molecules isolated in the solid Ar matrix were spatially oriented in the direction of the externally applied field (similar to 10(8) V m(-1)) in the laboratory frame by using the ice-film nanocapacitor method. The signature of the field-induced reorientation of water molecules was observed with reflection-absorption infrared spectroscopy. The Stark sensitivities of the D2O vibrations were determined from the field-induced change of vibrational frequencies of the spatially oriented D2O molecules. The Stark sensitivity of the D2O bending vibration was much larger than that of the symmetric stretching vibration, and the two normal modes showed the opposite signs. Isotope dependence of the Stark sensitivity of the bending vibration was also observed by investigating HDO and H2O molecules. An ab initio calculation was conducted to elaborate on the observed characteristics of the Stark sensitivity of water vibrations.
机译:水分子到电场的易感性为理解水簇和冷凝产水的振动光谱提供了基本和基本信息。在该研究中,实验确定水分分子对称拉伸振动的Nu(2),弯曲和Nu(1)对称拉伸振动的凝固性敏感性。通过使用冰膜纳米涂料方法,在实验室框架中,在固体AR基质中分离的水分子在实验室框架中(类似于10(8)V m(-1))的方向定向。用反射吸收红外光谱观察到水分分子的域诱导的水分子的签名。从空间取向的D2O分子的振动频率的振动频率变化确定D2O振动的STARK敏感性。 D2O弯曲振动的STARK敏感性远大于对称拉伸振动的敏感性,两种正常模式显示相反的符号。通过研究HDO和H2O分子,还观察到弯曲振动的STRAK敏感性的同位素依赖性。进行AB初始计算以详细阐述观察到的水振动性敏感性的特征。

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