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4D Printing of Adaptable “Living” Materials Based on Alkoxyamine Chemistry

2024/01/18 by H. B. Duc Tran, Clara Vazquez‐Martel, Samantha O. Catt +4 · 1 voice · 5 citations
Chemistry · Materials Science · Engineering · #Advanced Polymer Synthesis and Characterization #Polymer Surface Interaction Studies #Advanced Sensor and Energy Harvesting Materials

paper · pdf · doi:10.1002/adfm.202315238

openalex publication_date 2024/01/18 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/28

Abstract

Abstract 4D printing has emerged as a powerful strategy capable of revolutionizing additive manufacturing by enabling objects to dynamically transform overtime on demand. Despite significant progress, the full potential remains unrealized, particularly in the utilization of dynamic covalent chemistry. This study introduces a new approach using a multifunctional cross‐linker with alkoxyamine functionalities for 4D printing. Digital light processing (DLP) is employed for high‐resolution printing of complex objects. Leveraging alkoxyamine bonds' dynamic and living characteristics, the printed structures can be further modified through nitroxide‐mediated polymerization (NMP) using styrene and nitroxide exchange reactions (NER). The resulting “living” printed structures exhibit the unique ability to undergo both “growth” and “degrowth”, dynamically adapting their size as well as the reduced Young's Modulus across a wide range (770 kPa–1.2 GPa). The chain extension by NMP and softening by NER are carefully characterized by IR and EPR spectroscopy. The presented approach opens avenues for the development of 4D printed structures with complex adaptive systems, showcasing enormous potential in a wide range of fields.

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