4.8 Article

A Phenol-Amine Superglue Inspired by Insect Sclerotization Process

Journal

ADVANCED MATERIALS
Volume 32, Issue 43, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202002118

Keywords

adhesives; nanoparticles; phenol-amine; wound closure

Funding

  1. National Research Foundation of Korea (NRF) - Ministry of Science and ICT (MSIT): Development program for convergence R&D over traditional culture and current technology [2016M3C1B5906485]
  2. Center for Multiscale Chiral Architectures [2018R1A5A1025208]
  3. Bio & Medical Technology Development Program [2018M3A9H1021382]
  4. KIST Institutional Program [2V07080]
  5. Institute for Basic Science [IBS-R026-D1]
  6. Brain Korea 21(BK21) PLUS program
  7. Graduate School of YONSEI University Research Scholarship Grants in 2020
  8. National Research Foundation of Korea [2V07080, 4199990314020, IBS-R026-D1-2020-A00] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

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Exoskeletons of insects formed by sclerotization processes exhibit superstrong properties in moduli. Here, it is demonstrated that mimicking the sclerotization process using phenol and polyamine molecules unexpectedly results in a 100% ecofriendly, biocompatible waterborne superglue. Oxygen presented in air and dissolved in water acts as an initiator producing phenolic radical/quinone for superglue curing. Despite synthesis-free uses of water, phenol, and polyamine, its adhesion strength is comparable to commercial epoxy glue showing >6 MPa in lap shear strength. The phenol-amine superglue bonds to various substrates including ceramics, woods, fabrics, plastics, metals, and importantly biological tissues. Due to strong adhesion, the superglue effectively seals wounds within a few seconds, and, due to its waterborne nature, no harmful respiratory effect is observed because of any release of volatile organic compounds. The easy, cost-effective preparation of the phenol-amine superglue can revolutionize varieties of industrial, biomedical, daily life processes.

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