化学
超分子化学
单体
八面体
纳米颗粒
超分子聚合物
超分子组装
纳米技术
结晶学
X射线晶体学
高分子化学
晶体结构
作者
Ina Michalsky,Andreas Vargas Jentzsch,Irina Nyrkova,Mounir Maaloum,Frank Rominger,Milan Kivala,Nicolas Giuseppone
摘要
Self-assembly of C 3 -symmetric triarylamine trisamide monomers has been recently studied in the literature, consistently leading to supramolecular polymers and materials with remarkable optical and electronic properties. As observed with other families of C 3 -symmetric monomers, their nucleation and growth mechanisms mainly rely on their one-dimensional stacking through highly directional hydrogen bonding. Now, we report the possibility of shifting their directing noncovalent interactions from hydrogen bonding to π–π and van der Waals interactions and, consequently, of shifting their self-assembly from one-dimensional fibrils toward two-dimensional smectic layers that further organize in purely organic octahedral nanoparticles. This dramatic structural change is simply achieved by extension of the aromatic core from phenyl to naphthyl units. Interestingly, the size of these soft supramolecular octahedra can be controlled between 200 nm and 50 μm by choosing the cooling rate used during the self-assembly process. By employing a comprehensive combination of experimental and theoretical tools, we fully elucidate the hierarchical mechanisms at work in the octahedrons’ formation. These results highlight the potential tunability of C 3 -symmetric H-bonded monomers to generate original 3D supramolecular systems and materials.
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