4.7 Article

Hyperbranched poly(triazole) with thermal and metal ion dual stimuli-responsiveness

Journal

POLYMER CHEMISTRY
Volume 6, Issue 26, Pages 4801-4808

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5py00710k

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Funding

  1. National Natural Science Foundation of China [21374030, 21074036]
  2. Large Instruments Open Foundation of East China Normal University [201423]

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Oligo(ethylene glycol)-terminated hyperbranched poly(triazole) (hb-PTA-OEG) with thermal and metal ion dual stimuli-responsiveness was synthesized by Cu(I)-catalyzed azide-alkyne cycloaddition polymerization, which possessed a high molecular weight (M-n = 203 kDa) and good thermal properties (T-d = 367 degrees C, T-g = -14.1 degrees C). Importantly, hb-PTA-OEG exhibited a relatively low cloud point (CP) temperature ranging from 34.4 to 31.1 degrees C as the concentration was increased from 0.02 to 2.0 wt%. Simultaneously, hb-PTA-OEG has the ability to coordinate with various metal ions, and the type of metal ions influenced the CP of hb-PTA-OEG solution to some extent as a result of their different association strengths with the polymer, particularly, Ag+ ion showed a conspicuous contribution to increasing the CP among the several selected ions. As a result, hb-PTA-OEG can act as an absorber of metal ions, and the selective absorption of Ag+ ion could be reached by tuning temperature.

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