PVDF | PVDF-HFP

References

Buryanskaya, E. L., Gradov, O. V., Gradova, M. A., Kochervinskii, V. V., and Maklakova, I. A. (2023). Time-resolved multifractal analysis of electron beam induced piezoelectric polymer fiber dynamics: towards multiscale thread-based microfluidics or acoustofludics. Advanced Structured Materials, Vol. 195: 35–58. DOI: 10.1007/978-3-031-28744-2_3

Gradov, O. V. (2023). Towards novel ideas in the design of active field-driven implants and scaffolds based on PVDF and related materials for electroactive tissue regeneration (letter to the editor). Archives in Neurology & Neuroscience, 16(1)

Adamovic, E. D., Burianskaya, E. L., Gradov, O. V., Gradova, M. A., and Kochervinskij, V. V. (2024). PVDF-based sensors for cardiology and cardiovascular therapy or theranostics. Journal of Cardiology & Cardiovascular Therapy, 19(2):556007.

Gradov, O. V., Gradova, M. A., and Kochervinskij, V. V. (2021). Biomimetic biocompatible ferroelectric polymer materials with an active response for implantology and regenerative medicine. In Organic Ferroelectric Materials and Applications, WP Series in Electronic and Optical Materials, pages 571–619, United Kingdom. Elsevier Science. DOI: 10.1016/B978-0-12-821551-7.00012-9