Rzoska Sylwester J, Starzonek Szymon, Łoś Joanna, Drozd-Rzoska Aleksandra, Kralj Samo
Institute of High Pressure Physics Polish Academy of Sciences, Sokołowska 29/37, 01-142 Warsaw, Poland.
Laboratory of Physics of Complex Systems, Faculty of Natural Sciences and Mathematics, University of Maribor, Koroška 160, 2000 Maribor, Slovenia.
Nanomaterials (Basel). 2020 Nov 26;10(12):2343. doi: 10.3390/nano10122343.
The report shows the strong impact of fullerene C nanoparticles on phase transitions and complex dynamics of rod-like liquid crystal dodecylcyanobiphenyl (12CB), within the limit of small concentrations. Studies were carried out using broadband dielectric spectroscopy (BDS) via the analysis of temperature dependences of the dielectric constant, the maximum of the primary loss curve, and relaxation times. They revealed a strong impact of nanoparticles, leading to a ~20% change of dielectric constant even at = 0.05% of C fullerene. The application of the derivative-based and distortion-sensitive analysis showed that pretransitional effects dominate in the isotropic liquid phase up to 65 K above the clearing temperature and in the whole Smectic A mesophase. The impact of nanoparticles on the pretransitional anomaly appearance is notable for the smectic-solid phase transition. The fragility-based analysis of relaxation times revealed the universal pattern of its temperature changes, associated with scaling via the "mixed" ("activated" and "critical") relation. Phase behavior and dynamics of tested systems are discussed within the extended Landau-de Gennes-Ginzburg mesoscopic approach.
该报告显示,在低浓度范围内,富勒烯C纳米颗粒对棒状液晶十二烷基氰基联苯(12CB)的相变和复杂动力学有强烈影响。通过分析介电常数的温度依赖性、初级损耗曲线的最大值和弛豫时间,使用宽带介电谱(BDS)进行了研究。研究表明,纳米颗粒有强烈影响,即使在富勒烯C含量为0.05%时,介电常数也会有~20%的变化。基于导数和畸变敏感分析的应用表明,在高于清亮点温度65 K的各向同性液相以及整个近晶A中间相中,预过渡效应占主导。纳米颗粒对预过渡异常出现的影响在近晶-固相转变中很显著。基于弛豫时间的脆性分析揭示了其温度变化的普遍模式,这与通过“混合”(“活化”和“临界”)关系的标度有关。在扩展的朗道-德热纳-金兹堡介观方法内讨论了测试系统的相行为和动力学。