Dynamics and healing behavior of metallosupramolecular polymers. 2021

Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
Adolphe Merkle Institute, University of Fribourg, Chemin des Verdiers 4, 1700 Fribourg, Switzerland.

Self-healing or healable polymers can recuperate their function after physical damage. This process involves diffusion of macromolecules across severed interfaces until the structure of the interphase matches that of the pristine material. However, monitoring this nanoscale process and relating it to the mechanical recovery remain elusive. We report that studying diffusion across healed interfaces and a correlation of contact time, diffusion depth, and mechanical properties is possible when two metallosupramolecular polymers assembled with different lanthanoid salts are mended. The materials used display similar properties, while the metal ions can be tracked with high spatial resolution by energy-dispersive x-ray spectrum imaging. We find that healing actual defects requires an interphase thickness in excess of 100 nm, 10 times more than previously established for self-adhesion of smooth films of glassy polymers.

UI MeSH Term Description Entries

Related Publications

Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
January 2011, Chimia,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
July 2014, Journal of the American Chemical Society,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
September 2014, Chimia,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
December 2023, Chemical Society reviews,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
September 2008, Chemistry, an Asian journal,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
March 2011, Nature materials,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
August 2009, The Journal of chemical physics,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
April 2019, Journal of the American Chemical Society,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
March 2022, Polymer chemistry,
Laura N Neumann, and Emad Oveisi, and Albrecht Petzold, and Robert W Style, and Thomas Thurn-Albrecht, and Christoph Weder, and Stephen Schrettl
October 2020, Chimia,
Copied contents to your clipboard!