Flexible PVDF-based dielectric composites by modification BaTiO3 with fluorosilanes #sciencefather #researchawards



This study focuses on the development of flexible PVDF-based dielectric composites by modifying BaTiO3 nanoparticles with fluorosilanes of different alkane chain lengths. The surface modification enhances the compatibility between BaTiO3 and the PVDF matrix, leading to improved dielectric properties and mechanical flexibility. By tailoring the fluorosilane chain length, the study optimizes interfacial interactions, reducing dielectric loss while maintaining high permittivity. The findings provide valuable insights into designing high-performance dielectric materials for next-generation flexible electronics, energy storage devices, and capacitors. This innovative approach paves the way for advanced composite materials with enhanced stability, flexibility, and superior dielectric performance.


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