Macromolecule‐Driven Supramolecular Polymerization Induced by Crowding Effects

J Joost J. B. v. d. Tol (Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands) M Magda M. J. Dekker (Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry) Ádám Müller (Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands) P Puck Springintveld (Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands) E E. W. Meijer (Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry) G Ghislaine Vantomme (Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry)

Abstract

Abstract Macromolecular crowding plays a crucial role in biological systems by regulating dynamic processes, yet its effects in fully synthetic environments remain largely unexplored. Here, we systematically investigate how excluded volume effects influence supramolecular polymerizations in organic media. We employ various discotic supramolecular monomers that assemble sequentially into polymers and kinetically‐controlled higher‐order aggregates (HOAs) only in the presence of macromolecular crowders. The phase diagram of the supramolecular assemblies reveals a strong dependence on the macromolecule concentration, size, and polarity, which can be tuned to control polymerization. Remarkably, at high crowder concentrations, large condensed and aligned assemblies were observed in dried samples, suggesting a transition to phase‐separated states. By testing different monomers, macromolecules, and solvents, we establish the general applicability and versatility of macromolecular crowding in guiding supramolecular polymerization. This work provides fundamental insights into assembly processes in crowded environments and opens new avenues for applying macromolecular crowding beyond aqueous systems.

Article Details

Volume / Issue Vol. 64, Issue 36
Published September 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

J

Joost J. B. v. d. Tol

Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands

M

Magda M. J. Dekker

Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry

Ádám Müller

Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands

P

Puck Springintveld

Macromolecular and Organic Chemistry Group, Department of Chemical Engineering and Chemistry, Institute for Complex Molecular Systems Eindhoven University of Technology P.O. Box 513 Eindhoven 5600 MB The Netherlands

E

E. W. Meijer

Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry

G

Ghislaine Vantomme

Institute for Complex Molecular Systems and Laboratory of Macromolecular and Organic Chemistry