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Dynamic behaviour of a ferroelectric liquid crystal by means of Nuclear Magnetic Resonance and Dielectric Spectroscopy

机译:通过核磁共振和介电光谱法的铁电液晶的动态行为

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The field of ferroelectric liquid crystals (FLCs) is one of the most fascinating aspects of the Science of Materials for their interesting electro-optic applications. Among different chemical and physical properties those related to the molecular dynamics are very stimulating due to the relationship between molecular motions and macroscopic response to external fields, such as electric and magnetic ones. In this work, the molecular dynamics of a ferroelectric smectogen, namely the(S)-2-methylbutyl-[4'-(4"-heptyloxyphenyl)-benzoyl-4-oxy-(S)-2-((S)-2')-benzoyl)-propionyl)]-propionate(ZLL 7/~*) has been investigated by means of ~2H NMR and dielectric relaxation techniques. The first method allows us to get information on the molecular motions in the fast motion regime, in particular the diffusion reorientational motions of the whole molecule, as well as of the internal motions affecting the phenyl and biphenyl fragments. The second technique, which covers the slow motion regime, has been used to detect collective motions and fluctuation modes. This study allows us to have a complete idea of molecular motions in the different smectic phases formed by the ZLL 7/~* mesogens, in particular the paraelectric smectic A (SmA), the ferroelectric smectic C~* (SmC~*), the antiferroelectric smectic C_A~* (SmC_A~*) and the re-entrant ferroelectric smectic C~* (SmC_r~*) phases. This last phase has been investigated for the first time in this work, from the point of view of the dynamic behaviour. All results will be discussed in the framework of the molecular dynamics of ferroelectric liquid crystals, reported in the literature so far.
机译:铁电液晶(FLC)的领域是其有趣的电光应用的材料科学的最令人迷人的方面之一。与分子动力学相关的不同化学和物理性质,由于分子动作与外部领域的宏观反应之间的关系,例如电磁性和磁性。在这项工作中,铁电渣基的分子动力学,即(S)-2-甲基丁基-[4' - (4“ - 己酰氧基苯基) - 苯甲酰-4-氧 - (S)-2 - ((S) - 2') - 苯甲酰基) - 通过〜2H NMR和介电弛豫技术研究了丙酸(ZLL 7 /〜*)。第一种方法允许我们获取有关快速运动制度中的分子动作的信息,特别是整个分子的扩散重组运动,以及影响苯基和联苯片段的内部运动。覆盖慢动作制度的第二种技术已被用于检测集体运动和波动模式。这项研究允许我们在ZLL 7 /〜*颗粒形成的不同椎相色谱柱中完全了解分子运动,特别是释电偏晶A(SMA),铁电偏晶〜*(SMC〜*),排式偏晶C_A〜*(SMC_A〜*)和再参赛者铁电偏心C〜*(SMC_R〜*)阶段。最后一段从动态行为的角度来看,在这项工作中第一次调查。将在迄今为止的文献中报告的铁电液晶的分子动力学框架中讨论所有结果。

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