Barberá Joaquín, Cavero Emma, Lehmann Matthias, Serrano José-Luis, Sierra Teresa, Vázquez Jesús T
Química Orgánica, Facultad de Ciencias-I.C.M.A., Universidad de Zaragoza-C.S.I.C., 50009-Zaragoza, Spain.
J Am Chem Soc. 2003 Apr 16;125(15):4527-33. doi: 10.1021/ja0294313.
The present report undertakes a challenge of general interest in supramolecular chemistry: the achievement of helical organizations with controlled structure. To achieve this target we considered the possibility of inducing supramolecular chirality using molecules that were designed to organize into columnar mesophases. The use of oxazoline-derived ligands and metal coordination served as tools to prepare molecules with a phasmidic-like structure, which show columnar organization in the liquid crystalline state. To ensure the formation of chiral mesophases, these complexes bear stereogenic centers in the rigid coordination environment of the metal. X-ray and circular dichroism experiments have revealed that chirality transfer does indeed take place from the chiral molecule to the columnar liquid crystal organization. This chiral columnar organization appears as a helix consisting of stacks of molecules that rotate with respect to one another along the column while maintaining their mean planes parallel to each other. In fact, it has been concluded that packing of these polycatenar molecules must be more efficient upon rotation of a molecule with respect to the adjacent one along the column. Furthermore, the same type of helical supraorganization has been found to be present in the mesophase of the racemic mixture and the mixture of diastereomers prepared from the racemic ligand. In this case, segregation of the optical isomers is proposed to occur to give rise to both types of helix (right-handed and left-handed).
实现具有可控结构的螺旋组织。为实现这一目标,我们考虑了使用设计成能组织成柱状中间相的分子来诱导超分子手性的可能性。使用恶唑啉衍生的配体和金属配位作为工具来制备具有类相控结构的分子,这些分子在液晶态下呈现柱状组织。为确保手性中间相的形成,这些配合物在金属的刚性配位环境中带有手性中心。X射线和圆二色性实验表明,手性确实从手性分子转移到了柱状液晶组织。这种手性柱状组织表现为一个螺旋结构,由分子堆叠而成,这些分子沿着柱子相互旋转,同时保持它们的平均平面相互平行。事实上,已经得出结论,这些多链分子沿着柱子相对于相邻分子旋转时,堆积效率更高。此外,在外消旋混合物的中间相以及由外消旋配体制备的非对映体混合物中也发现了相同类型的螺旋超组织。在这种情况下,提出会发生旋光异构体的分离,从而产生两种类型的螺旋(右手螺旋和左手螺旋)。