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March 21, 2026Advanced Engineering Materials2 citations

Effects of Carbon Nanoparticles on Triboelectro‐Induced Surface Defects

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MTMohsen TajediniLFLu FangJBJacob Bons

Key Points

  • This research investigates how carbon nanoparticles influence triboelectro-induced surface defects in biomaterials.
  • Utilized synthetic collagen-like peptide hydrogels
  • Combined self-assembly with light-triggered crosslinking
  • Compared bonding strength with commercial adhesives
  • Achieved bonding strength comparable to LiquiBand
  • Demonstrated high cytocompatibility
  • Showed biodegradability suitable for tissue repair

Abstract

Triboelectro-Induced Surface Defects Bioinspired synthetic collagen-like peptide hydrogels offer the advantages of both natural and synthetic biomaterials. In their Research Article (10.1002/adem.202502084), Hong Liang and co-workers show that by combining self-assembly with light-triggered crosslinking, these tunable materials achieve bonding strength comparable to commercial adhesives like LiquiBand. Additionally, their cytocompatibility and biodegradability make them a robust platform for soft tissue repair and wound closure.

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Cite This Study

Tajedini et al. (2026) studied this question.

synapsesocial.com/papers/69be354a6e48c4981c67365fhttps://doi.org/10.1002/adem.70678
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