Seo Sang Hyuk, Jones Ticora V, Seyler Helga, Peters Jack O, Kim Tae Hyung, Chang Ji Young, Tew Gregory N
School of Materials Science and Engineering, Hyperstructured Organic Materials Research Center, Seoul National University, Seoul 151-742, Korea.
J Am Chem Soc. 2006 Jul 26;128(29):9264-5. doi: 10.1021/ja060354b.
Triangular ortho-phenylene ethynylene (o-PE) cyclic trimers represent a novel member of shape-persistent macrocycles. Shape-persistent cyclic structures remain of great interest as molecular components in the fields of supramolecular materials, host-guest chemistry, and materials science. Novel discotic liquid crystalline properties are reported from triangular-shaped o-PE macrocycles containing branched alkoxy- and/or triethylene glycol (TEG) side chains using polarized optical microscopy (POM), differential scanning calorimetry (DSC), and X-ray diffraction (XRD). The macrocycles self-assemble into thermotropic rectangular columnar (Colr) (for M1), hexagonal columnar (Colh) (for M2), and discotic nematic (for M3) mesophases at room temperature. This work shows clearly that electron-rich PE macrocycles can form LC materials. Alkyl side chains in M1 promote order, while hydrophilic side chains of M2 generate an amphiphilic structure that provides a different driving force for organization. The ability to create ordered self-assembling materials from these novel electron-rich macrocycles is important in nanotechnology.
三角形邻亚苯基乙炔(o-PE)环状三聚体是形状持久大环化合物的一个新成员。形状持久的环状结构作为超分子材料、主客体化学和材料科学领域的分子组分一直备受关注。利用偏光显微镜(POM)、差示扫描量热法(DSC)和X射线衍射(XRD),报道了含支链烷氧基和/或三甘醇(TEG)侧链的三角形o-PE大环化合物具有新型盘状液晶性质。这些大环化合物在室温下自组装成热致矩形柱状(Colr)(对于M1)、六方柱状(Colh)(对于M2)和盘状向列相(对于M3)中间相。这项工作清楚地表明,富电子的PE大环化合物可以形成液晶材料。M1中的烷基侧链促进有序排列,而M2中的亲水性侧链产生两亲结构,为分子组织提供了不同的驱动力。从这些新型富电子大环化合物制备有序自组装材料的能力在纳米技术中具有重要意义。