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Smectogenic liquid crystals and nanoparticles: an approach for potential application in photovoltaics

机译:致菌液晶和纳米颗粒:在光伏中潜在应用的方法

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We synthesized monomeric liquid crystals, M6R8 and I6R8, and nanoparticles of TiO2, to form a nanocomposite, which was characterized by polarized optical microscopy (POM), DSC and structurally by both wide angle X-ray diffraction and X-ray scattering using the planar geometry. The transition temperatures of the nanocomposites did not vary greatly with the concentration of TiO2. The alignment quality increases as the concentration of TiO2 increases from 7 to 30 wt% as can be observed using polarized microscopy and confirmed by the results of the X-ray scattering experiment. The alignment was not as good for I6R8, since in this case the liquid crystals attach to the nanoparticle just through the hydrogen bonding of the hydroxyl group in the aromatic cores. In the case of M6R8 an additional electrostatic interaction is present through the methacrylic groups which enhance the alignment. Although M6R8 shows better optical alignment, I6R8 presents a higher conductivity. This is because of the higher electron delocalization in the aromatic cores, where the nanoparticles are linked.
机译:我们合成了单体液晶M6R8和I6R8,以及TiO2纳米颗粒,形成了纳米复合材料,其特征是通过偏振光学显微镜(POM),DSC进行了表征,并在结构上通过使用平面的广角X射线衍射和X射线散射进行了表征几何。纳米复合材料的转变温度不会随TiO2浓度的变化而变化很大。取向质量随着TiO2浓度从7到30 wt%的增加而增加,这可以使用偏光显微镜观察到并通过X射线散射实验的结果证实。对准对于I 6 R 8而言不是那么好,因为在这种情况下,液晶仅通过芳族核中的羟基的氢键附接到纳米颗粒。在M6R8的情况下,通过甲基丙烯酸基团会存在其他静电相互作用,从而增强排列。尽管M6R8表现出更好的光学取向,但I6R8表现出更高的电导率。这是由于在纳米颗粒连接的芳族核中较高的电子离域作用。

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