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Systematic Studies on Structural Parameters for Nanotubular Assembly of Hexa-peri-hexabenzocoronenes

机译:六六六六苯甲酮纳米管组装结构参数的系统研究

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摘要

Thirteen different hexa-peri-hexabenzocoronenes (HBCs) Ⅰ-Ⅲ were newly synthesized, and their self-assembling behaviors were investigated. Taking into account also the reported behaviors of amphiphilic HBCs, some structural parameters of HBC essential for the tubular assembly were revealed. Points to highlight include (1) the importance of two phenyl groups attached to one side of the HBC unit, (2) essential roles of long paraffinic side chains on the other side of the phenyl groups, and (3) no necessity of hydrophilic oligo(ethylene glycol) side chains. The hierarchical nanotubular structure, rendered by virtue of a synchrotron radiation technique, was virtually identical to our previous proposal, where the nanotubes are composed of helically coiled bilayer tapes with a tilting angle of ~45°. Each tape consists of π-stacked HBC units, where the inner and outer HBC layers are connected by interdigitation of paraffinic side chains. The coiled structure is most likely caused by a steric congestion of the phenyl groups attached to the HBC unit, whose tilting direction may determine the handedness of the helically chiral nanotube.
机译:新合成了13种不同的六-六-六苯并氢酮(HBC)Ⅰ-Ⅲ,并研究了它们的自组装行为。还考虑到已报道的两亲HBC的行为,揭示了管状组装必不可少的HBC的一些结构参数。要强调的要点包括(1)HBC单元一侧连接的两个苯基的重要性;(2)苯基另一侧的长链烷烃侧链的重要作用;以及(3)不需要亲水性寡聚体(乙二醇)侧链。借助同步加速器辐射技术绘制的分层纳米管结构实际上与我们先前的建议相同,纳米管由螺旋缠绕的双层胶带组成,倾斜角度约为45°。每个带由π堆积的HBC单元组成,其中内部和外部HBC层通过链烷烃侧链的叉指连接。卷曲结构最有可能是由与HBC单元相连的苯基的空间拥挤引起的,其倾斜方向可能决定螺旋手性纳米管的旋向性。

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