Nayere Taebnia
Papers
2
Total Citations
780
H-Index
2
About
Nayere Taebnia is a pioneering researcher at the intersection of biomaterials and tissue engineering, whose work is redefining the possibilities of regenerative medicine. Her primary research areas focus on the development of advanced self-healing hydrogels and multifunctional bionics, addressing critical challenges in creating durable, long-lasting materials for biomedical applications. Taebnia’s major contribution lies in her groundbreaking 2019 paper, "Self‐Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering?"—which has garnered an impressive 593 citations—where she demonstrated how self-healable hydrogels can overcome the brittleness of conventional materials, offering unprecedented durability and stability for clinical use. She further advanced the field with her 2021 study, "The Manufacture of Unbreakable Bionics via Multifunctional and Self‐Healing Silk–Graphene Hydrogels" (187 citations), which introduced a novel silk-graphene composite capable of transmitting biological signals while conforming seamlessly to the body’s curvilinear architecture. This work bridges the gap between rigid electronics and soft tissues, opening new avenues for unbreakable, bio-inspired devices. Taebnia’s innovative approach has positioned her as a leading voice in creating next-generation biomaterials that mimic nature’s resilience, making her research essential reading for students and scientists exploring the future of tissue engineering and smart bionics.
Research Focus
Key Achievements
Top Papers
- 1Self‐Healing Hydrogels: The Next Paradigm Shift in Tissue Engineering?593 citations · 2019
- 2