Keith Christina, Amaranatha Reddy R, Baumeister Ute, Tschierske Carsten
Martin-Luther University Halle-Wittenberg, Institute of Organic Chemistry, Kurt-Mothes Strasse 2, D-06120 Halle, Germany.
J Am Chem Soc. 2004 Nov 10;126(44):14312-3. doi: 10.1021/ja046138p.
The first bent core mesogen carrying branched oligosiloxane units at both ends was synthesized and investigated with polarized light microscopy, DSC, X-ray diffraction of well aligned samples, and electrooptical methods. Two different antiferroelectric switching liquid crystalline phases were found. Both can be regarded as modulated smectic phases in which the molecules have extremely large tilt angles. In both mesophases, the field-induced switching takes place by rotation around the molecular long axes. This field-induced reorientation switches the layer chirality. The transition between the two mesophases is associated with a change of the tilt direction from synclinic to anticlinic. The synclinic high-temperature phase is an obliquelike ribbon phase whereas the anticlinic low-temperature phase represents a sinusoidal undulated layer structure (SmCAPA). It is proposed that the phase transition from the ribbon phase to the undulated layer structure is mainly driven by the change of the interlayer correlation.
合成了首个两端带有支化低聚硅氧烷单元的弯曲核液晶基元,并通过偏光显微镜、差示扫描量热法、取向良好样品的X射线衍射以及电光方法对其进行了研究。发现了两种不同的反铁电开关液晶相。两者都可视为调制近晶相,其中分子具有极大的倾斜角。在这两种中间相中,场致开关通过围绕分子长轴的旋转发生。这种场致重新取向会切换层的手性。两种中间相之间的转变与倾斜方向从顺斜向反斜的变化有关。顺斜高温相是一种倾斜状带状相,而反斜低温相则代表正弦起伏层结构(SmCAPA)。有人提出,从带状相到起伏层结构的相变主要由层间相关性的变化驱动。