Abstract
Wearable devices have made transformative advancements driven by the integration of nanomaterials, enhancing their versatility, sensitivity, and overall performance. The emerging 3D printing techniques revolutionize traditional fabrication, enabling the high-efficiency fabrication for sophisticated and miniaturized healthcare monitoring systems. This review summarizes the essential properties of nanomaterials and their roles in 3D printing and examines the pros and cons of various 3D printing methods. Key applications of 3D-printed wearable devices, showcasing the synergistic contributions of nanomaterials, are introduced to provide a comprehensive overview of the state-of-the-art progress and the promising prospects for next-generation healthcare monitoring.
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CITATION STYLE
Chen, C., Fu, Y., Liu, Y., Dutta, P., Lin, Y., Du, D., & Qiu, K. (2025, July 1). Next-generation health monitoring: The role of nanomaterials in 3D-printed wearable devices. Materials Today. Elsevier B.V. https://doi.org/10.1016/j.mattod.2025.03.005
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