Bhat Deepa G, Selvaraj Radhika, Kapanipathaiya Sadashiva B, Ramarao Pratibha
Raman Research Institute, C. V. Raman Avenue, Sadashivanagar, Bangalore 560 080 (India).
Chemphyschem. 2015 Mar 16;16(4):825-32. doi: 10.1002/cphc.201402714. Epub 2015 Jan 16.
Dielectric spectroscopy is used to investigate the structure, molecular dynamics, and relaxation phenomena in electric-field-induced switchable dark conglomerate (DC) phases in a bent-core liquid crystal. The DC phases are obtained by applying a high-frequency ac electric field in the B1rev phase or by cooling under a dc or an ac field from the isotropic phase. Although the DC phases exhibit good electro-optic switching properties, the dielectric parameters are different from those observed in typical lamellar SmCP phases and similar to those obtained in a non-switchable DC phase. We therefore propose that the dielectric response and reduced intensity of the relaxation modes may be a general feature in DC phases and may owe its origin to the deformed layer structure in which certain molecular motions are impeded. Further, we find that in the field-induced DC phases derived from the isotropic phase, the dielectric modes are affected by chiral segregation promoted by the applied field.
介电谱用于研究弯曲核液晶中电场诱导的可切换暗聚集体(DC)相的结构、分子动力学和弛豫现象。通过在B1rev相施加高频交流电场或从各向同性相在直流或交流电场下冷却可获得DC相。尽管DC相表现出良好的电光开关特性,但其介电参数与典型层状SmCP相不同,与在不可切换的DC相中获得的参数相似。因此,我们提出介电响应和弛豫模式强度的降低可能是DC相的一个普遍特征,其起源可能归因于某些分子运动受到阻碍的变形层结构。此外,我们发现,在由各向同性相衍生的场诱导DC相中,介电模式受到外加场促进的手性分离的影响。