Xinxue Tang
Papers
1
Total Citations
13
H-Index
1
About
Xinxue Tang is a pioneering researcher in the field of advanced functional materials, with a primary focus on epsilon-negative materials and their electromagnetic applications. Their most-cited work, "Theoretically designed epsilon-negative materials: Ni nanoparticles encapsulated CNTs and their magnetic driven properties" (2024, 13 citations), introduces a groundbreaking approach to designing epsilon-negative composites by encapsulating nickel nanoparticles within carbon nanotubes. This study not only demonstrates a novel synthesis method but also reveals the magnetic-driven tunability of these materials, offering a theoretical framework for achieving negative permittivity—a property critical for next-generation electromagnetic shielding, sensors, and metamaterials. Tang’s contributions bridge theoretical design and experimental realization, providing a pathway for tailoring material properties for specific technological needs. With this work, they have established a foundation for exploring epsilon-negative behavior in hybrid nanostructures, earning recognition for its potential to revolutionize high-frequency electronics and energy devices. Their research continues to inspire innovations in metamaterials and nanocomposites, positioning them as a rising voice in materials science.
Research Focus
Key Achievements
Top Papers
- 1