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首页> 外文期刊>Chemistry of Materials >Supramolecular Liquid-Crystalline Networks Built by Self-Assembly of Multifunctional Hydrogen-Bonding Molecules
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Supramolecular Liquid-Crystalline Networks Built by Self-Assembly of Multifunctional Hydrogen-Bonding Molecules

机译:多功能氢键分子自组装构建的超分子液晶网络

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Supramolecular liquid-crystalline networks have been prepared by self-assembly of multifunctional H-bond donor and acceptor molecules through the formation of intermolecular hydrogen bonds. Two tricarboxylic acids, 1,3,5-tris(2-(2-(4-carboxyphenoxy)ethoxy)ethoxy)-benzene (1) and 3,4-bis(2-(2-(4-carboxyphenoxy)ethoxy)ethoxy)benzoic acid (2), have been synthesized for the use as trifunctional H-bond donors. These trifunctional H-bond donors have been complexed with bifunctional H-bond acceptors, such as 4,4′-bipyridine (3), 1,2-bis(4-pyridyl)ethane (4), trans-1,2-bis(4-pyridyl)ethylene (5), and bis(2-(2-(4-(2-(4-pyridyl)-ethenyl)phenoxy)ethoxy)ethyl) ether (6), maintaining a 1:1 donor/acceptor group stoichiometry. All individual components are nonmesogenic. Self-assembly of these multifunctional compounds results in the formation of liquid-crystalline network structures. For example, the H-bonded complex 1/5 shows a smectic A phase from 176 to 156℃, while 2/5 exhibits a nematic phase between 200 and 87℃ on cooling. This behavior is attributed to the dynamics of the hydrogen bonds. These results suggest that the trifunctional H-bond donors adopt linear conformations that induce calamitic mesomorphic behavior with bifunctional H-bond acceptors.
机译:超分子液晶网络是通过形成分子间氢键通过自组装多功能氢键供体和受体分子制备的。两种三羧酸,1,3,5-三(2-(2-(2-(4-羧苯氧基)乙氧基)乙氧基)苯(1)和3,4-双(2-(2-(2-(4-羧苯氧基)乙氧基)乙))已经合成了乙氧基)苯甲酸(2)用作三官能氢键供体。这些三官能氢键供体已经与双官能氢键受体复合,例如4,4'-联吡啶(3),1,2-双(4-吡啶基)乙烷(4),反式1,2-双(4-吡啶基)乙烯(5)和双(2-(2-(4-(2-(4-(2-(4-吡啶基)-乙烯基)苯氧基)乙氧基)乙基)醚(6),保持1:1供体/受体基化学计量。所有单个成分都是非介晶的。这些多功能化合物的自组装导致液晶网络结构的形成。例如,氢键复合物1/5在176至156℃时具有近晶A相,而2/5在冷却时显示200至87℃之间的向列相。该行为归因于氢键的动力学。这些结果表明,三官能H键供体采用线性构象,该构象诱导了具有双官能H键受体的热介观行为。

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