Thermoplastic-like heterogeneous photopolymers for additive manufacturing with tailored hyperbranched rubbers

Abstract

Conventional photopolymers used in light-based additive manufacturing are typically brittle materials with thermoset characteristics. Here we introduce a one-step synthesis of hyperbranched polyethylene rubbers functionalized with pendant methacrylic groups and their application as tougheners of a model brittle photopolymer based on non-volatile styrene and maleimide derivatives. The rubber tougheners can be tailored to tune their compatibility with the matrix, influencing the morphology and the thermomechanical properties of the final printed resins. The resulting polymer structures were analysed by atomic force microscopy, revealing various degrees of phase separation related to the rubber molar mass and methacrylate functionalization. Further, the analysis of the prepared toughened materials revealed the ability of functionalized hyperbranched polyethylene rubbers to improve the mechanical properties significantly, while glass transition temperatures around 100 °C could be maintained. Notably, even tensile behaviour mimicking typical thermoplastic yield strain comparable to ABS was observed in one of the prepared materials. This monomer/rubber system appeared to be the most promising and was therefore selected for in-depth analysis of the curing process using photo-rheology and photo-DSC. Finally, this material was used for hot lithography and several highly detailed objects were prepared, demonstrating the good printability of this toughened material.

Supplementary files

Article information

Article type
Paper
Submitted
12 May 2025
Accepted
06 Aug 2025
First published
06 Aug 2025
This article is Open Access
Creative Commons BY license

RSC Appl. Polym., 2025, Accepted Manuscript

Thermoplastic-like heterogeneous photopolymers for additive manufacturing with tailored hyperbranched rubbers

V. Musil, D. Laa, M. Ahmadi, J. Stampfl, R. Liska, J. Merna and K. Ehrmann, RSC Appl. Polym., 2025, Accepted Manuscript , DOI: 10.1039/D5LP00138B

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