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Evaluation of Ring Expansion-Controlled Radical Polymerization System by AFM Observation.

Atsushi NarumiMasatsugu YamadaYamato UnnoJiro KumakiWolfgang Hubertus BinderKazushi EnomotoMoriya KikuchiSeigou Kawaguchi
Published in: ACS macro letters (2019)
We here present a direct link between the reaction mechanisms for the ring-expansion "vinyl" polymerization system and atomic force microscopy (AFM) observations. The brush-modification clearly discriminates the desired cyclic species with the contour lengths ( L c ) of 28-132 nm and molar masses ( M AFM ) of 60.2-283 kg mol -1 from the other linear ones. The 293 polymer blushes observed in a 1.0 μm × 1.0 μm AFM image are individually characterized, eventually providing clear answers about the mechanisms of this rare polymerization system, which include ring-expansion vinyl polymerizations to generate cyclic polymers, fusions of the generated cycles to form multimers, and their scission to form linear or ring-opened species. The relationship between the molecular chain lengths and the cyclic versus linear morphologies is highlighted.
Keyphrases
  • atomic force microscopy
  • high speed
  • single molecule
  • machine learning
  • computed tomography
  • magnetic resonance
  • neural network