Bioinspired self-healing materials: lessons from nature

Joseph C. Cremaldi and Bharat Bhushan
Beilstein J. Nanotechnol. 2018, 9, 907–935. https://doi.org/10.3762/bjnano.9.85

Cite the Following Article

Bioinspired self-healing materials: lessons from nature
Joseph C. Cremaldi and Bharat Bhushan
Beilstein J. Nanotechnol. 2018, 9, 907–935. https://doi.org/10.3762/bjnano.9.85

How to Cite

Cremaldi, J. C.; Bhushan, B. Beilstein J. Nanotechnol. 2018, 9, 907–935. doi:10.3762/bjnano.9.85

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Presentation Graphic

Picture with graphical abstract, title and authors for social media postings and presentations.
Format: PNG Size: 750.6 KB Download

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Chen, H.; Sang, M.; Pan, Y.; Duan, S.; Zhang, Z.; Hu, Y.; Gong, X. Bioinspired LM/Al particle reinforced shear stiffening elastomers with improved flame retardancy and thermal conductivity towards thermal-impact protection. Composites Part B: Engineering 2025, 306, 112845. doi:10.1016/j.compositesb.2025.112845
  • Patra, R.; Trivedi, E. Self-healing Composite Materials in Packaging Applications. Materials Horizons: From Nature to Nanomaterials; Springer Nature Singapore, 2025; pp 173–196. doi:10.1007/978-981-95-0677-4_7
  • Yenpech, N.; Chirachanchai, S. Mechanochromic Building Blocks with a Dynamic Chemical Cross-Linking Network in Shape Memory Polycaprolactone: A Model Strategy for Integrating Reversibility, Repeatability, and Recoverability into a Single Multiresponsive Material. ACS Sustainable Chemistry & Engineering 2025, 13, 17991–18005. doi:10.1021/acssuschemeng.5c06610
  • Sung, C. H. J.; Hao, T.; Fang, H.; Nguyen, A. T.; Perricone, V.; Yu, H.; Huang, W.; Sarmiento, E.; Ornelas, A. F. D.; Lublin, D.; Wehling, R.; Farajollahi, S.; Arakaki, A.; Nepal, D.; Lord, N. P.; Kisailus, D. Biological and Biologically Inspired Functional Nanostructures: Insights into Structural, Optical, Thermal, and Sensing Applications. Advanced materials (Deerfield Beach, Fla.) 2025, e09281. doi:10.1002/adma.202509281
  • Rojas González, L. M.; Ghavidelnia, N.; Eberl, C.; Mylo, M. D. Bioinspired polypropylene-based functionally graded materials and metamaterials modeling the mistletoe-host interface. Beilstein journal of nanotechnology 2025, 16, 1592–1606. doi:10.3762/bjnano.16.113
  • Abdelkareem, M. A. A.; Jing, X.; Ali, M. K. A.; Choy, Y. Recent advances in vibration energy harvesting reinforced by bioinspired designs/structures. Smart Materials and Structures 2025, 34, 83002–083002. doi:10.1088/1361-665x/adfb37
  • 97Chapter 5 Understanding controlled/living polymerization-driven self-healing chemistries: polymerization pathways, structure–property–processing relationships, and recent trends. Mechanisms of Self-Healing Polymers; De Gruyter, 2025; pp 97–150. doi:10.1515/9783111583716-005
  • Hayati, F.; Ghasemi, S.; Krishnan, M. A.; Balajorshari, M. A. S. Bioinspired Surface Technology for Regenerative Medicine. Biomaterials, Bioengineering and Sustainability; Springer Nature Switzerland, 2025; pp 441–486. doi:10.1007/978-3-031-87744-5_12
  • Khajavi, R. Smart Polymers: A Comprehensive Literature Review of Recent Developments and Advancements. Applied Nanomaterials and Smart Polymers 2025, 2, 1–102. doi:10.61882/ansp.1213849.2.1.1
  • Tomažinčič, D.; Klemenc, J. Development of a special self-adaptive auxetic structure for protecting tree trunks from external damage. Trees, Forests and People 2025, 20, 100860. doi:10.1016/j.tfp.2025.100860
  • Zhang, X.; Liu, X.; Li, J.; Chen, X. Impact-resistant sandwich composite materials and their application in body-impact protection equipment: a systematic review. The Journal of The Textile Institute 2025, 1–15. doi:10.1080/00405000.2025.2499249
  • Kouser, T.; Nur, F.; Aliyu, A.; Altaf, F.; Zulfiqar, H.; Alhems, L. M. Applications of Epoxy Resins as a Coating Technology in Fluid Systems. ChemBioEng Reviews 2025, 12. doi:10.1002/cben.70000
  • Andrew, J. J.; Ubaid, J.; Uddin, M. A.; Saadi, O. W.; Khan, K.; Umer, R.; Schiffer, A. Energy absorption characteristics of additively manufactured sea sponge-inspired lattice structures under low-velocity impact loading. Defence Technology 2025. doi:10.1016/j.dt.2025.04.008
  • Mougkogiannis, P.; Nikolaidou, A.; Adamatzky, A. Living electronics in cellulose zoogleal mats. Carbohydrate Polymer Technologies and Applications 2025, 9, 100627. doi:10.1016/j.carpta.2024.100627
  • Sarkar, S.; S., A.; Salaeh, S.; Hirschberg, V.; Banerjee, S. S. Self‐healing and shape memory functions in elastomers: Recent advances and future prospectives. Polymer Engineering & Science 2025, 65, 1620–1654. doi:10.1002/pen.27092
  • Meigel, F. J.; Rulands, S. Controlling noise with self-organized resetting. Communications physics 2025, 8, 63. doi:10.1038/s42005-025-01985-7
  • Yang, X.; Zhang, Z.; Xu, X.; Wang, L.; Zhou, Y.; Du, Z.; Shi, M.; Wu, C.; Liu, Z.; Qu, B.; Zhang, L.; Ma, Y.; Lou, S. Self-healing functional materials for advanced batteries: Mechanisms, dynamics, and applications. Energy Storage Materials 2025, 75, 103992. doi:10.1016/j.ensm.2024.103992
  • Fini, E. H.; Hajikarimi, P. Introduction to bioinspiration and biomimetics in pavement construction. Bio-Based and Bio-Inspired Pavement Construction Materials; Elsevier, 2025; pp 1–23. doi:10.1016/b978-0-443-18634-9.00001-5
  • Li, J.; Wang, J.; Wu, J.; Wang, X. Matrix-producing cells' orientation order facilitates Bacillus subtilis biofilm self-healing. Archives of microbiology 2024, 207, 19. doi:10.1007/s00203-024-04224-9
  • Shashikumar, U.; Tsai, P.-C.; Wang, C.-T.; Lay, C.-H.; Ponnusamy, V. K. Beyond biomimicry: Innovative bioinspired materials strategies and perspectives for high-performance energy storage devices. Process Safety and Environmental Protection 2024, 191, 1193–1217. doi:10.1016/j.psep.2024.08.123
Other Beilstein-Institut Open Science Activities