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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Electrolyte Effects on the Chiral Induction and on Its Temperature Dependence in a Chiral Nematic Lyotropic Liquid Crystal
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Electrolyte Effects on the Chiral Induction and on Its Temperature Dependence in a Chiral Nematic Lyotropic Liquid Crystal

机译:电解质对手性向列溶致液晶的手性诱导及其温度依赖性的影响

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We present a study on the effect of added CsCl and of temperature variation on the chiral induction in a chiral nematic lyotropic liquid crystal (LC) composed of the surfactant cesium perfluorooctanoate (CsPFO), water, and the chiral dopant D-Leucine (D-Leu). The chiral induction was measured as the helical pitch P. The role of the additives CsCl and D-Leu on the phase behavior is investigated and discussed. The thermal stabilization effect of CsCl is shown to lead to an apparent salt effect on the pitch when the pitch is compared at a constant temperature. This apparent effect is removed by comparing the pitch measured for different salt concentrations at a temperature relative to the phase-transition temperatures; thus, the real salt effect on the pitch is described. High salt concentrations are shown to increase the pitch, that is, hinder the chiral induction. The effect is discussed in terms of a decreased solubilization of the amphiphilic chiral solute D-Leu in the micelles due to the salt-induced screening of the surfactant head groups and the consequential denser packing of the surfactants. The temperature variation of the pitch is investigated for all CsCl concentrations and is found to be essentially independent of the salt concentration. The temperature variation is analyzed and discussed in the context of a theoretical model talcing into account specific properties of lyotropic liquid crystals. A hyperbolic decrease of the pitch is found with increasing temperature, which is known, from thermotropic liquid crystals, to stem from pretransitional critical fluctuations close to the lamellar phase. However, the experimental data confirmed the theoretical prediction that, at high temperature, that is, far away from the transition into the lamellar phase, the pitch is characterized by a linear temperature dependence which is determined by a combination of steric and dispersion chiral interactions. The parameters of the theoretical expression for the pitch have been determined by fitting the experimental data. The analysis of the salt concentration dependence of these parameters indicates that the chiral induction mechanism of D-Leu is dominated by chiral steric interactions.
机译:我们介绍了由表面活性剂全氟辛酸铯(CsPFO),水和手性掺杂剂D-亮氨酸(D-)组成的手性向列溶致液晶(LC)中添加CsCl和温度变化对手性诱导的影响的研究。 Leu)。手性感应被测量为螺旋螺距P。研究和讨论了添加剂CsCl和D-Leu对相行为的作用。当在恒定温度下比较沥青时,CsCl的热稳定作用显示出对沥青的明显盐分效应。通过比较在相对于相变温度的温度下针对不同盐浓度测得的沥青,可以消除这种明显的影响。因此,描述了对音高的实际盐影响。高盐浓度显示增加沥青,即阻碍手性诱导。根据盐诱导的表面活性剂头基团的筛选以及表面活性剂的密集堆积,通过减少胶束中两亲性手性溶质D-Leu的增溶来讨论该效果。研究了所有CsCl浓度下沥青的温度变化,发现该温度变化基本上与盐浓度无关。在理论模型的背景下分析和讨论了温度变化,并考虑了溶致液晶的特定特性。人们发现,随着温度的升高,沥青的双曲线减小,这是从热致液晶中得知的,这是由于靠近层状相的过渡前临界波动引起的。然而,实验数据证实了理论预测,即在高温下,即远离过渡到层状相,沥青的特征在于线性温度依赖性,该线性温度依赖性由空间和分散手性相互作用的组合确定。螺距的理论表达式参数已通过拟合实验数据确定。对这些参数的盐浓度依赖性的分析表明,D-Leu的手性诱导机理主要是手性空间相互作用。

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