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  4. Synthesis and Characterization of Superparamagnetic Polyurethane for Advanced MPI Applications
 
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2026
Journal Article
Title

Synthesis and Characterization of Superparamagnetic Polyurethane for Advanced MPI Applications

Abstract
Magnetically traceable polymer composites have gained increasing attention for biomedical applications. They are particularly relevant for designing materials that can be non-invasively detected and localized using magnetic particle imaging (MPI) or analyzed using magnetic particle spectroscopy (MPS). Superparamagnetic iron oxide nanoparticles (SPIONs) are of particular interest due to their excellent magnetic properties, biocompatibility, and tunable surface chemistry. The incorporation of SPIONs into polymeric matrices such as polyurethane (PU) enables the creation of flexible, biocompatible, and magnetically active materials. Polyurethane is well-established in medical device manufacturing due to its favorable mechanical and chemical properties. However, the reproducible embedding of SPIONs within PU and the preservation of both magnetic and mechanical performance remain significant challenges. This study aimed to develop a systematic approach for integrating SPIONs into PU, focusing on reproducible synthesis, structural characterization, and magnetic evaluation of the resulting nanocomposites.
Author(s)
Bardenhagen, Jaron
Universität zu Lübeck
Malhotra, Ankit
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE  
Stagge, Pascal
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE  
Aderhold, Eric  orcid-logo
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE  
Ahlborg, Mandy  orcid-logo
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE  
Lüdtke-Buzug, Kerstin  
University of Lübeck
Journal
International journal on magnetic particle imaging : IJMPI  
Conference
International Workshop on Magnetic Particle Imaging 2026  
Open Access
File(s)
Download (619.89 KB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.18416/IJMPI.2026.2603040
10.24406/publica-8243
Language
English
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE  
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