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Tuning the polarization along linear polyaromatic strands for rationally inducing mesomorphism in lanthanide nitrate complexes

机译:调整线性多芳香族链上的极化,以合理诱导硝酸镧系元素络合物的同构

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摘要

The opposite orientation of the ester spacers in the rodlike ligands L 4C12 (benzimidazole-OOC-phenyl) and L 5C12 (benzimidazole-COO-phenyl) drastically changes the electronic structure of the aromatic systems, without affecting their meridional tricoordination to trivalent lanthanides, Ln(III), and their thermotropic liquid crystalline (i.e., mesomorphic) behaviors. However, the rich mesomorphism exhibited by the complexes [Ln(L 4C12)(NO3)3] (Ln=La-Lu) vanishes in [Ln(L 5C12)(NO3)3], despite superimposable molecular structures and comparable photophysical properties. Density functional theory (DFT) and time-dependant DFT calculations performed in the gas phase show that the inversion of the ester spacers has considerable effects on the electronic structure and polarization of the aromatic groups along the strands, which control residual intermolecular interactions responsible for the formation of thermotropic liquid-crystalline phases. As a rule of thumb, an alternation of electron-poor and electron-rich aromatic rings favors intermolecular interactions between the rigid cores and consequently mesomorphism, a situation encountered for L 4C12, L 5C12, [Ln(L 4C12)(NO3)3], but not for [Ln(L 5C12)(NO3)3]. The intercalation of an additional electron-rich diphenol ring on going from [Ln(L 5C12)(NO3)3] to [Ln(L 6C12)(NO3)3] restores mesomorphism despite an unfavorable orientation of the ester spacers, in agreement with our simple predictive model.
机译:棒状配体L 4C12(苯并咪唑-OOC-苯基)和L 5C12(苯并咪唑-COO-苯基)中酯间隔基的相反取向会极大地改变芳族体系的电子结构,而不会影响其经向三价配位的三价镧系元素Ln (III),以及它们的热致液晶(即,同晶)行为。但是,尽管[Ln(L 5C12)(NO3)3]具有重叠的分子结构和可比的光物理性质,但其[Ln(L 4C12)(NO3)3](Ln = La-Lu)配合物表现出的丰富的同质性消失了。在气相中进行的密度泛函理论(DFT)和随时间变化的DFT计算表明,酯间隔基的转化对沿链的芳族基团的电子结构和极化有很大影响,从而控制了残余的分子间相互作用。热致液晶相的形成。根据经验,贫电子和富电子芳环的交替有利于刚性核之间的分子间相互作用,因此有利于同构,这是L 4C12,L 5C12,[Ln(L 4C12)(NO3)3]遇到的情况,但不适用于[Ln(L 5C12)(NO3)3]。从[Ln(L 5C12)(NO3)3]到[Ln(L 6C12)(NO3)3]插入一个额外的富电子双酚环,尽管酯间隔基的取向不利,仍恢复了介晶性,这与我们简单的预测模型。

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