Roy & Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, United States.
J Am Chem Soc. 2011 Feb 23;133(7):2311-28. doi: 10.1021/ja110753s. Epub 2011 Jan 31.
The synthesis, structural, and retrostructural analysis of two libraries containing 16 first and second generation C(3)-symmetric self-assembling dendrimers based on dendrons connected at their apex via trisesters and trisamides of 1,3,5-benzenetricarboxylic acid is reported. A combination of X-ray diffraction and CD/UV analysis methods demonstrated that their C(3)-symmetry modulates different degrees of packing on the periphery of supramolecular structures that are responsible for the formation of chiral helical supramolecular columns and spheres self-organizable in a diversity of three-dimensional (3D) columnar, tetragonal, and cubic lattices. Two of these periodic arrays, a 3D columnar hexagonal superlattice and a 3D columnar simple orthorhombic chiral lattice with P222(1) symmetry, are unprecedented for supramolecular dendrimers. A thermal-reversible inversion of chirality was discovered in helical supramolecular columns. This inversion is induced, on heating, by the change in symmetry from a 3D columnar simple orthorhombic chiral lattice to a 3D columnar hexagonal array and, on cooling, by the change in symmetry from a 2D hexagonal to a 2D centered rectangular lattice, both exhibiting intracolumnar order. A first-order transition from coupled columns with long helical pitch, to weakly or uncorrelated columns with short helical pitch that generates a molecular rotator, was also discovered. The torsion angles of the molecular rotator are proportional to the change in temperature, and this effect is amplified in the case of the C(3)-symmetric trisamide supramolecular dendrimers forming H-bonds along their column. The structural changes reported here can be used to design complex functions based on helical supramolecular dendrimers with different degree of packing on their periphery.
报道了包含 16 个第一代和第二代基于通过三酯和三酰胺连接在其顶点的 dendrons 的 C(3)对称自组装树枝状大分子的两个库的合成、结构和反结构分析。X 射线衍射和 CD/UV 分析方法的组合表明,它们的 C(3)对称性调节了超分子结构外围不同程度的堆积,这是形成手性螺旋超分子柱和球体自组装的原因,这些超分子柱和球体可在多种三维(3D)柱状、四方和立方晶格中自组织。这些周期性排列中有两个,即具有 P222(1)对称性的三维柱状六方超晶格和三维柱状简单正交手性晶格,对于超分子树枝状大分子来说是前所未有的。在螺旋超分子柱中发现了手性的热可逆反转。这种反转是由对称性从三维柱状简单正交手性晶格变为三维柱状六方排列引起的,在加热时发生,并且在冷却时由对称性从二维六方变为二维中心矩形晶格引起,两者都表现出柱内有序。还发现了从具有长螺旋节距的耦合柱到具有短螺旋节距的弱相关或不相关柱的一级转变,从而产生分子旋转器。分子旋转器的扭转角与温度变化成正比,在形成氢键的 C(3)对称三酰胺超分子树枝状大分子的情况下,这种效应会被放大。这里报道的结构变化可用于设计具有不同外围堆积程度的螺旋超分子树枝状大分子的复杂功能。