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首页> 外文期刊>Angewandte Chemie >Aromatic Gain in a Supramolecular Polymer
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Aromatic Gain in a Supramolecular Polymer

机译:超分子聚合物中的芳族增益

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The synergy of aromatic gain and hydrogen bonding in a supramolecular polymer is explored. Partially aromatic bis(squaramide) bolaamphiphiles were designed to self-assemble through a combination of hydrophobic, hydrogen-bonding, and aromatic effects into stiff, high-aspect-ratio fibers. UV and IR spectroscopy show electron delocalization and geometric changes within the squaramide ring indicative of strong hydrogen bonding and aromatic gain of the monomer units. The aromatic contribution to the interaction energy was further supported computationally by nucleus-independent chemical shift (NICS) and harmonic oscillator model of aromaticity (HOMA) indices, demonstrating greater aromatic character upon polymerization: at least 30% in a pentamer. The aromatic gain-hydrogen bonding synergy results in a significant increase in thermodynamic stability and a striking difference in aggregate morphology of the bis(squaramide) bolamphiphile compared to isosteres that cannot engage in this effect.
机译:探索了超分子聚合物中芳族增益和氢键的协同作用。部分芳香族双(方酸酰胺)两亲物被设计成通过疏水,氢键和芳香作用的组合而自组装成高纵横比的硬纤维。紫外和红外光谱显示,在方酰胺环内电子离域和几何变化表明单体单元具有很强的氢键键合和芳族增益。原子核独立化学位移(NICS)和芳香族谐波指数(HOMA)的谐振子模型在计算上进一步支持了芳香族对相互作用能的贡献,表明聚合后的芳香性更高:在五聚体中至少为30%。与不能参与这种作用的等排物相比,芳族增益-氢键合协同作用导致热力学稳定性显着提高,双(方酰胺)亲两亲物的聚集体形态发生显着差异。

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