Advances in Carbon-Based Materials, 2nd Edition
Topic Information
Dear Colleagues,
Carbon-based materials—including graphene, carbon nanotubes, MXene–carbon hybrids, fullerenes, and emerging low-dimensional carbon allotropes—remain a cornerstone of materials science, driving the next generation of advanced multifunctional nanocomposites. Due to their exceptional electrical conductivity, thermal management capabilities, and mechanical robustness, these materials are rapidly expanding beyond traditional structural applications into intelligent, adaptive, and sustainable systems.
This Topic focuses on the latest advancements in the synthesis, processing, and application of next-generation carbon-based materials and nanocomposites. We particularly encourage experimental research targeting the optimization of physical properties, scalable manufacturing, and the architectural design of carbon networks. To reflect the rapid evolution of the field, this Special Issue places a strong emphasis on critical modern frontiers such as the integration of machine learning and high-throughput computational tools for accelerated material discovery, as well as green synthesis routes, bio-based precursors, and recyclable composites aligned with circular economy principles.
Furthermore, we welcome cutting-edge studies on carbon nanocomposites engineered for advanced energy storage, hydrogen technologies, catalysis, wearable electronics, soft robotics, electromagnetic interference shielding, and self-healing systems.
We invite original research articles, comprehensive reviews, and innovative methodologies that bridge the gap between fundamental laboratory science and industrial scalability. By merging advanced experimental techniques with cutting-edge computational tools, this Special Issue aims to build a comprehensive knowledge base to overcome current production bottlenecks and expand the disciplinary boundaries of carbon research.
Prof. Dr. Giovanni Spinelli
Prof. Dr. Vittorio Romano
Topic Editors
Keywords
- carbon-based composites
- nanofillers
- experimental characterization of composites
- computational study of composites
- modeling and numerical analysis of heat transport
- mechanical properties of composites