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The study of chiral self-sorting is extremely important for understanding biological systems and for developing applications for the biomedical field. In this study, we attempted unprecedented chiral self-sorting supramolecular polymerization accompanying helical inversion with Ag in one enantiomeric component. Bola-type terpyridine-based ligands (-L and -L) comprising - or -alanine analogs were synthesized. First, -L dissolved in DMSO/HO (1 : 1, v/v) forms right-handed helical fibers (aggregate I) supramolecular polymerization. However, after the addition of AgNO (0.2-1.1 equiv.) to the -L ligand, in particular, it was found that aggregate II with left-handed helicity is generated from the [-L(AgNO)] complex through the [-LAg] complex the dissociation of aggregate I by a multistep with an off pathway, thus demonstrating interesting self-sorting properties driven by helicity and shape discrimination. In addition, the [-L(AgNO)] complex, which acted as a building block to generate aggregate III with a spherical structure, existed as a metastable product during the formation of aggregate II in the presence of 1.2-1.5 equiv. of AgNO. Furthermore, the AFM and CD results of two samples prepared using aggregates I and III with different volume ratios were similar to those obtained upon the addition of AgNO to free -L. These findings suggest that homochiral self-sorting in a mixture system occurred by the generation of aggregate II composed of the [-LAg] complex the rearrangement of both, aggregates I and III. This is a unique example of helicity- and shape-driven chiral self-sorting supramolecular polymerization induced by Ag starting from one enantiomeric component. This research will improve understanding of homochirality in complex biological models and contribute to the development of new chiral materials and catalysts for asymmetric synthesis.
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http://dx.doi.org/10.1039/d1sc06413d | DOI Listing |
J Am Chem Soc
August 2025
Center for Advanced Technologies, Adam Mickiewicz University, Uniwersytetu Poznańskiego 10, 61-614 Poznań, Poland.
One of the main aspects in which artificial capsules and cages still differ from their biological counterparts is symmetry─a fundamental trait that gives natural systems exceptional selectivity in molecular recognition. While the symmetry challenge has been recently addressed within metallosupramolecular or covalent systems, the creation of purely noncovalent capsular assemblies with tunable symmetry remains elusive. One exciting avenue toward reducing symmetry is to avail chirality in chiral-sensitive self-assembly, where symmetry is altered upon component binding.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
August 2025
Stoddart Institute of Molecular Science, Department of Chemistry, Zhejiang University, Hangzhou, 310058, P.R. China.
The precise synthesis of stereochemically controlled multicavity macrocyclic hosts based on pillar[n]arenes presents a significant challenge in supramolecular chemistry. This difficulty primarily stems from the spontaneous generation of planar chirality-induced stereoisomer mixtures during synthetic procedures, which considerably complicates the isolation process. In this study, we introduce a social chiral self-sorting strategy utilizing a triangular gold complex, enabling the stereochemically controlled synthesis of [9]cycloparaphenylene-pillar[5]arene trimers ([9]CPP-3P[5]A).
View Article and Find Full Text PDFAngew Chem Int Ed Engl
September 2025
Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, Brno, CZ-62500, Czechia.
The rational design and selective self-assembly of flexible and unsymmetric ligands into large coordination complexes is an eminent challenge in supramolecular coordination chemistry. Here, we present the coordination-driven self-assembly of natural ursodeoxycholic-bile-acid-derived unsymmetric tris-pyridyl ligand (L) resulting in the selective and switchable formation of chiral stellated PdL and PdL cages. The selectivity of the cage originates in the adaptivity and flexibility of the arms of the ligand bearing pyridyl moieties.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
August 2025
Key Laboratory of Colloid, Interface and Chemical Thermodynamics, Institute of Chemistry, Chinese Academy of Sciences (CAS), ZhongGuanCun North First Street 2, Beijing, 100190, China.
Chirality-driven self-assembly is crucial in biological systems, but achieving precise control over chiral narcissistic or social self-sorting as well as the distinction between them remains a major challenge in multicomponent supramolecular systems. To investigate chirality-driven self-assembly, two classes of chiral building blocks, photo-responsive (cinnamic glutamide derivative, L/D-CG) and fluorescent molecules (dansyl glutamide derivative, L/D-DNSG), were designed and integrated into homochiral systems (L-CG/L-DNSG or D-CG/D-DNSG) and heterochiral systems (L-CG/D-DNSG or D-CG/L-DNSG). Either homo- or heterochiral systems could form organogels with fibrous structures.
View Article and Find Full Text PDFChemistry
August 2025
Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto, 615-8510, Japan.
Chiral self-sorting, including both narcissistic and social self-sorting, can generate homochiral and heterochiral supramolecular assemblies, respectively. However, achieving control over both pathways through molecular design remains challenging. Herein, we designed a series of macrocyclic pillar[5]arene derivatives with linear chains that thread into the cavities of adjacent molecules in the crystal, forming 1D superstructures.
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