Changing Self‐Assembly Through Degradation: Phenyl Vinyl Ketone Polymer Nanoparticles Under Light

M M. A. Sachini N. Weerasinghe (Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA) P Parker Anthony McBeth (Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA) M Michelle C. Mancini (Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA) D Dominik Konkolewicz (Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA)

Abstract

Abstract Photodegradable nanoparticles with sphere, worm, and vesicle morphologies were synthesized following polymerization induced self‐assembly (PISA), incorporating a photoresponsive phenyl vinyl ketone (PVK) block and a nonphoto responsive 2‐hydroxypropyl methacrylamide (HPMA) block. The photodegradation of nanoparticles under UV revealed that the initial shapes of sphere and vesicle particles are retained even until 7 h and after 24 h of photo‐induced degradation, respectively, despite a significant reduction in molecular weight ( M n ). This could be due to the assembly of degraded PVK fragments in the hydrophobic region, maintaining the relative hydrophilic to hydrophobic ratio. However, worm nanoparticles exhibited a fast morphology reversal after 2 min of degradation, yielding sphere nanoparticles. Therefore, photo responsive PVK nanoparticles with morphology and conversion‐dependent degradation behavior were explored. Furthermore, undegraded and degraded nanoparticle coatings exhibited different surface properties, determined by contact angle measurements, with both morphology and degradation impacting the surface properties. Finally, the PVK nanoparticles could encapsulate molecules and release them upon degradation. Therefore, this study can ultimately be applied to numerous fields due to the potential uses of degradable polymers in various material systems, especially for the controlled release of agrochemicals, cleaning agents, or antifungal agents, as well as to enable surface modifications upon degradation.

Article Details

Volume / Issue Vol. 64, Issue 44
Published October 27, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (4)

M

M. A. Sachini N. Weerasinghe

Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA

P

Parker Anthony McBeth

Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA

M

Michelle C. Mancini

Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA

D

Dominik Konkolewicz

Department of Chemistry and Biochemistry Miami University 651 E High St Oxford OH 45056 USA