Synthesis of soft octahedral nanoparticles through supramolecular self-assembly of C3‑symmetric trinaphthylamine trisamides

Self-assembly of C3-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 C3-symmetric monomers, their nucleation...

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Autores principales: Michalsky, Ina (Autor) , Vargas Jentzsch, Andreas (Autor) , Nyrkova, Irina (Autor) , Maaloum, Mounir (Autor) , Rominger, Frank (Autor) , Kivala, Milan (Autor) , Giuseppone, Nicolas (Autor)
Formato: Article (Journal)
Lenguaje:inglés
Publicado: May 20, 2026
In: Journal of the American Chemical Society
Year: 2026, Volumen: 148, Número: 19, Pages: 20137-20149
ISSN:1520-5126
DOI:10.1021/jacs.6c04987
Acceso en línea:Verlag, lizenzpflichtig, Volltext: https://doi.org/10.1021/jacs.6c04987
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Notas de Autor:Ina Michalsky, Andreas Vargas Jentzsch, Irina Nyrkova, Mounir Maaloum, Frank Rominger, Milan Kivala, and Nicolas Giuseppone
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Sumario:Self-assembly of C3-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 C3-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 C3-symmetric H-bonded monomers to generate original 3D - supramolecular systems and materials.
Notas:Online veröffentlicht: 07. Mai 2026
Gesehen am 10.08.2026
Descripción Física:Online Resource
ISSN:1520-5126
DOI:10.1021/jacs.6c04987