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Nanocomposites
Section Information
The Nanocomposites section aims to advance the frontier of nanocomposite materials by harnessing the unique potential of nanomaterials and nanotechnology. As an interdisciplinary platform, it bridges fundamental nanomaterial research with design, synthesis, fabrication, engineering, and development of high-performance structural or functional nanocomposite systems to meet pressing challenges across academia and industry. We welcome original research articles and comprehensive reviews that explore all categories of nanocomposites, from design and fabrication to characterization and application. Topics of interest include, but are not limited to:
- Synthesis and functionalization of 0D, 1D or 2D nanoscale reinforcements or fillers (e.g., nanoparticles, quantum dots, carbon nanotubes, nanofibers, graphene, MXenes, TMDs, nanoplatelets, nanosheets, etc.).
- Design, fabrication and processing technologies of polymer, metal and ceramic matrix nanocomposites (e.g., in situ polymerization, melt blending, powder processing, electrospinning, 3D printing, layer-by-layer assembly, etc.).
- Multiscale nanostructure–property relationships.
- Mechanical, chemical, thermal, electrical, optical, magnetic, barrier and biomedical properties.
- Interface engineering and compatibility design.
- Degradation, durability, and long-term stability.
- Sustainable and bio-based nanocomposites (e.g., nanocellulose reinforced systems, biodegradable nanocomposites).
- Computational modeling and simulation of nanostructure and performance.
- Applications in aerospace, automotive, electronics, energy, environment, biomedicine, sensors and construction.
- Recycling, lifecycle assessment, and circular economy strategies.
- Advanced characterization techniques (e.g., TEM, AFM, XPS, in situ mechanical testing).

