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Updated: Aug 14, 2025

Manufacturing of Three-dimensionally Microstructured Nanocomposites through Microfluidic Infiltration
Published on: March 12, 2014
Dielectric and Mechanical Properties of 3D Printed Nanocomposites with Varied Particle Diameter
Benjamin Barclay1, Bradley Duncan1, Maxwell Plaut1
1MIT Lincoln Laboratory, 244 Wood Street, Lexington, Massachusetts02421, United States.
Abstract:
3D printed nanocomposites provide a method for generating high-performance radio frequency devices. Limited work has been done to investigate the influence the nanoparticle diameter has on the performance of 3D printable nanocomposites. We describe here the development of a family of 3D printable nanocomposite inks formulated from nanoparticles with diameters ranging from 30 to 300 nm. Relative permittivity values for the printed nanocomposites were unaffected by nanoparticle diameter whereas loss tangent, glass transition temperature, and elastic modulus were altered. This work provides a framework for designing 3D printable nanocomposites and highlights the importance that nanoparticle diameter plays in formulation strategy.

