Supramolecular polymers are fascinating materials due to their strikingly self-healing capabilities empowered by reversible bonds. However, due to the lack of knowledge about the molecular structure evolution at the fractured interfaces, there is no existing theory to explain and predict the diverse healing times of different supramolecular materials observed in experiments. Here, we systematically study the self-adhesion of both unentangled and entangled supramolecular polymer networks through molecular simulations. We find that the recovery of macroscopic interfacial strength almost linearly depends on the microscopic molecular formations at fractured interfaces of supramolecular polymers, including reversible bonds and entanglements (entangled systems only). More importantly, we place the healing time into the context of intrinsic relaxation timescales of supramolecular polymer networks. It is found that the intrinsic sticky Rouse time features the self-adhesion process of all fractured supramolecular polymers, representing the full recovery of interfacial strength. At this critical timescale, two things happened to guarantee the full recovery of fractured systems: (i) polymer chains have diffused across the fractured interface with a displacement comparable to their sizes; (ii) the crossed stickers and polymer chains have updated their reversible bonds and entanglements (entangled systems only), respectively. The clear molecular description and suggested characteristic self-adhesion time will help the molecular design of supramolecular polymers.
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Keith, Andrew N.
Morgan, Benjamin J.
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Morgan, Benjamin J.
Tanas, Alexander K.
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Tanas, Alexander K.
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Nikitina, Evgeniia
Ivanov, Dimitri A.
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Lomonosov Moscow State Univ, Moscow 119991, Russia
Inst Sci Mat Mulhouse IS2M, F-68057 Mulhouse, FranceUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Ivanov, Dimitri A.
Vatankhah-Varnosfaderani, Mohammad
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Vatankhah-Varnosfaderani, Mohammad
Dobrynin, Andrey V.
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
Dobrynin, Andrey V.
Sheiko, Sergei S.
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Univ North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USAUniv North Carolina Chapel Hill, Dept Chem, Chapel Hill, NC 27599 USA
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Univ Paris 06, Sorbonne Univ, UMR 7238, F-75252 Paris 05, France
CNRS, UMR 7238, Paris, France
Tata Inst Fundamental Res, Natl Ctr Biol Sci, Bangalore 560065, Karnataka, India
Manipal Univ, Manipal 576104, Karnataka, IndiaUniv Paris 06, Sorbonne Univ, UMR 7238, F-75252 Paris 05, France