Feringán Beatriz, Cerdá Jesús, Diosdado Beatriz, Aragó Juan, Ortí Enrique, Giménez Raquel, Sierra Teresa
Departamento de Química Orgánica, Instituto de Nanociencia y Materiales de Aragón (INMA), Universidad de Zaragoza-CSIC, 50009, Zaragoza, Spain.
Instituto de Ciencia Molecular, Universidad de Valencia, 46980, Paterna, Spain.
Chemistry. 2020 Nov 26;26(66):15313-15322. doi: 10.1002/chem.202001271. Epub 2020 Oct 19.
The ability of a star-shaped tris(triazolyl)triazine derivative to hierarchically build supramolecular chiral columnar organizations through the formation of H-bonded complexes with benzoic acids was studied from a theoretical and experimental point of view. The combined study has been done at three different levels including the study of the structure of the triazine core, the association with benzoic acids in stoichiometry 1:3, and the assembly of 1:3 complexes in helical aggregates. Although the star-shaped triazine core crystallizes in a non-C conformation, the C -symmetric conformation is theoretically predicted to be more stable and gives rise to a favorable C supramolecular 1:3 complex upon the interaction with three benzoic acids in their voids. In addition, calculations at different levels (DFT, PM7, and MM3) for the 1:3 host-guest complex predict the formation of large stable columnar helical aggregates stabilized by the compact packing of the interstitial acids by π-π and CH⋅⋅⋅π interactions. The acids restrict the movement of the the star-shaped triazine cores along the stacking axis causing a template effect in the self-assembly of the complex. Theoretical predictions correlate with experimental results, since the interaction with achiral or chiral 3,4,5-(4-alkoxybenzyloxy)benzoic acids gives rise to supramolecular complexes that organize in bulk hexagonal columnar mesophases stable at room temperature with intracolumnar order. The existence of supramolecular chirality in the mesophase was determined for complexes formed by acids derived from (S)-2-octanol. Chiral aggregation was also evidenced for complexes formed in dodecane.
从理论和实验的角度研究了一种星形三(三唑基)三嗪衍生物通过与苯甲酸形成氢键复合物来分层构建超分子手性柱状结构的能力。该联合研究在三个不同层面上进行,包括三嗪核心结构的研究、与化学计量比为1:3的苯甲酸的缔合以及1:3复合物在螺旋聚集体中的组装。尽管星形三嗪核心以非C构象结晶,但理论预测C对称构象更稳定,并且在与三个苯甲酸在其空隙中相互作用时会形成有利的C超分子1:3复合物。此外,对1:3主客体复合物在不同层面(DFT、PM7和MM3)的计算预测,通过间隙酸通过π-π和CH⋅⋅⋅π相互作用的紧密堆积形成大的稳定柱状螺旋聚集体。这些酸限制了星形三嗪核心沿堆积轴的移动,在复合物的自组装中产生模板效应。理论预测与实验结果相关,因为与非手性或手性的3,4,5-(4-烷氧基苄氧基)苯甲酸的相互作用会产生超分子复合物,这些复合物在室温下以柱状内有序的块状六方柱状中间相形式组织起来。对于由(S)-2-辛醇衍生的酸形成的复合物,确定了中间相中存在超分子手性。在十二烷中形成的复合物也证明了手性聚集。