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Development of Infrared Electroabsorption Spectroscopy and Its Application to Molecular Structural Studies

机译:红外电吸收光谱学的发展及其在分子结构研究中的应用

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We have constructed an infrared electroabsorption spectroscopic system employing the alternating current (AC) coupled dispersive method developed previously in our laboratory. It is highly sensitive, measuring electric-field-induced infrared absorption changes as small as 6×10~(-8) in the mid-infrared region of 4000-820 cm~(-1). Infrared electroabsorption spectra of liquids and solutions can be measured at room temperature. The system was first applied to liquid acetone to observe the orientational as well as the electronic polarization signals. These signals show distinct behaviors that are exactly predicted by theory. It was then applied to liquid 1,2-dichloroethane, for which electric-field-induced gauche/trans equilibrium changes were detected as infrared absorption changes. The gauche/trans ratio in room-temperature liquid 1,2-dichloroethane has been determined for the first time as 1.4±0.2. This equilibrium constant has led to the free energy difference ΔG of 0.9±0.4 kJ mol~(-1) (ΔG=G_(g)-G_(t)) and the entropy difference of ΔS=-3.0±1.4 J K~(-1) mol~(-1) with the known enthalpy difference ΔH~0.0 kJ mol~(-1). Finally, the system was applied to 1,4-dioxane solutions of N-methylacetamide. The dipole moments of the monomer as well as that of the dimer of N-methylacetamide have been determined separately and a head-to-tail structure of the dimer has been clarified. The instrumentation and the theoretical basis of infrared electroab-sorption spectroscopy are described in detail together with the above-mentioned experimental results.
机译:我们已经建立了一个红外电吸收光谱系统,该系统采用了我们实验室之前开发的交流电(AC)耦合色散法。它是高度敏感的,可以测量在4000-820 cm〜(-1)的中红外区域中电场引起的红外吸收变化小至6×10〜(-8)。液体和溶液的红外电吸收光谱可以在室温下测量。该系统首先应用于液体丙酮,以观察取向和电子极化信号。这些信号显示了理论上准确预测的不同行为。然后将其应用到液体1,2-二氯乙烷中,检测到电场引起的薄纱/反式平衡变化是红外吸收变化。室温液态1,2-二氯乙烷中的树胶/反式比首次确定为1.4±0.2。该平衡常数导致自由能差ΔG为0.9±0.4 kJ mol〜(-1)(ΔG= G_(g)-G_(t))和熵差为ΔS= -3.0±1.4 JK〜(- 1)mol〜(-1)具有已知的焓差ΔH〜0.0 kJ mol〜(-1)。最后,将该体系应用于N-甲基乙酰胺的1,4-二恶烷溶液。已经分别确定了单体以及N-甲基乙酰胺的二聚体的偶极矩,并且已经阐明了该二聚体的头尾结构。与上述实验结果一起详细描述了红外电吸收光谱仪的仪器和理论基础。

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