García-Iglesias Miguel, de Waal Bas F M, de Feijter Isja, Palmans Anja R A, Meijer E W
Laboratory of Macromolecular and Organic Chemistry, Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600, MB Eindhoven (The Netherlands).
Chemistry. 2015 Jan 2;21(1):377-85. doi: 10.1002/chem.201404375. Epub 2014 Nov 14.
The synthesis of C3 - and C2 -symmetric benzene-1,3,5-tricarboxamides (BTAs) containing well-defined oligodimethylsiloxane (oDMS) and/or alkyl side chains has been carried out. The influence of the bulkiness of the oDMS chains in the aggregation behavior of dilute solutions of the oDMS-BTAs in methylcyclohexane was studied by temperature-dependent UV spectroscopy. The formation of hierarchically self-assembled aggregates was observed at different BTA concentrations, the tendency of aggregation increases by shortening or removing oDMS chains. Chiral BTAs were investigated with circular dichroism (CD) spectroscopy, showing a stronger tendency to aggregate than the achiral ones. Majority rules experiments show a linear behavior consistent with the existence of a high mismatch penalty energy. The most efficient oDMS-BTAs organogelators have the ability to form stable organogels at 5 mg mL(-1) (0.75 wt %) in hexane. Solid-state characterization techniques indicate the formation of an intermolecular threefold hydrogen bonding between adjacent molecules forming thermotropic liquid crystals, exhibiting a hexagonal columnar organization from room temperature to above 150 °C. A decrease of the clearing temperatures was observed when increasing the number and length of the oligodimethylsiloxane chains. In addition to the three-fold hydrogen bonding that leads to columnar liquid crystalline phase, segregation between the oDMS and aliphatic chains takes place in the BTA functionalized with two alkyl and one oDMS chain leading to a superlattice within the hexagonal structure with potential applications in lithography.
已开展了含明确的低聚二甲基硅氧烷(oDMS)和/或烷基侧链的C3和C2对称苯-1,3,5-三甲酰胺(BTA)的合成。通过温度依赖性紫外光谱研究了oDMS链的体积大小对oDMS-BTA在甲基环己烷稀溶液聚集行为的影响。在不同的BTA浓度下观察到了分级自组装聚集体的形成,缩短或去除oDMS链会增加聚集趋势。采用圆二色(CD)光谱对手性BTA进行了研究,结果表明其比非手性BTA具有更强的聚集趋势。多数规则实验显示出与存在高错配惩罚能量相一致的线性行为。最有效的oDMS-BTA有机凝胶剂能够在己烷中5 mg mL-1(0.75 wt%)的浓度下形成稳定的有机凝胶。固态表征技术表明,相邻分子之间形成了分子间三重氢键,形成了热致液晶,从室温到150℃以上呈现六方柱状结构。当增加低聚二甲基硅氧烷链的数量和长度时,观察到清亮点温度降低。除了导致柱状液晶相的三重氢键外,在用两条烷基链和一条oDMS链官能化的BTA中,oDMS链和脂肪族链之间发生了相分离,导致六方结构内形成超晶格,在光刻中具有潜在应用。