首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Polarized Infrared Spectroscopic Study on Hindered Rotation around the Molecular Axis in the Smectic-C~* Phase of a Ferroelectric Liquid Crystal with a Naphthalene Ring. Application of Two-Dimensional Correlation Spectroscopy to Polarization Angle-De
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Polarized Infrared Spectroscopic Study on Hindered Rotation around the Molecular Axis in the Smectic-C~* Phase of a Ferroelectric Liquid Crystal with a Naphthalene Ring. Application of Two-Dimensional Correlation Spectroscopy to Polarization Angle-De

机译:带有萘环的铁电液晶的近晶C〜*相中分子轴受阻旋转的偏振红外光谱研究。二维相关光谱在偏振角De中的应用

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Polarization angle-dependent infrared spectra of a ferroelectric liquid crystal with a naphtohalene ring in the smectic-C~* phase were measured at 60 ℃ under dc voltage of 40 V with positive and negative polarity for investigating the relative orientation of the alkyl chain, mesogen, and chiral segments. The obtained polarization angle-dependent infrared spectra were analyzed by two-dimensional (2D) correlation spectroscopy. The 2D correlation analysis clearly detects slight phase differences in the polarization angle dependence which are hardly recognized by ordinary plots of intensity changes in infrared bands. It has been revealed from the 2D correlation analysis that not only the two carbonyl groups, but also other parts of molecule, carry out hindered rotations about the long molecular axis. The 2D correlation analysis also allows us to separate a CH_3 asymmetric stretching band due to the chiral methyl group from those arising from other methyl groups. The C=O stretching bands due to the carbonyl group in the chiral part are also separated by 2D correlation spectroscopy into two bands, which may arise from the rotational isomerism around the O-C axis of the chiral part.
机译:在60℃,正负电压为40 V的直流电压下,于60℃下测量近晶C〜*相中带有萘卤环的铁电液晶的偏振角相关红外光谱,以研究烷基链,介晶的相对取向和手性段。通过二维(2D)相关光谱法分析获得的偏振角相关的红外光谱。二维相关分析清楚地检测到偏振角相关性中的细微相位差,这在红外波段强度变化的普通图中很难识别。从2D相关性分析中已经揭示,不仅两个羰基基团,而且分子的其他部分都绕长分子轴进行受阻旋转。二维相关分析还使我们能够将由于手性甲基而产生的CH_3不对称伸展带与其他甲基引起的CH_3不对称伸展带分开。还通过二维相关光谱将由于手性部分中的羰基引起的C = O拉伸带分为两个带,这可能是由于围绕手性部分的O-C轴的旋转异构引起的。

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