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Phosphonobetaine/sulfur dioxide copolymer by Butler's cyclopolymerization process

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24 Scopus citations

Abstract

The zwitterionic monomer, ethyl 3-(N,N-diallylammonio)propanephosphonate and sulfur dioxide were cyclocopolymerized in DMSO using azobisisobutyronitrile or ammonium persulfate as initiators to afford a pH-responsive polyphosphonobetaine/SO2 (PPB/SO2) copolymer. The polymers, on treatment with HCl and NaOH, gave the aqueous solutions of the corresponding cationic polyphosphononic acid (CPP) and anionic polyphosphonate (APP). The solution properties of the PPB having two pH-responsive functionalities were investigated in detail by potentiometric and viscometric techniques. Basicity constants of the amine and phosphonate groups in APP were found to be "apparent" and as such follow the modified Henderson-Hasselbalch equation. The incorporation of SO2 moiety has resulted in the decrease of basicity constant of the nitrogens in the copolymer by staggering ≥2 units of log K in compare to that of the corresponding homopolymer. The basicity difference is expected to have an effect on the chelating properties of the polymers. In contrast to many polycarbo- and -sulfobetaines, the PPB was all found to be soluble in salt-free water as well as in salt (including Ca2+ and Li+)-added solutions. The PPB demonstrated 'antipolyelectrolyte' viscosity behavior and found to have higher viscosity values in LiCl than in NaCl or NaI.

Original languageEnglish
Pages (from-to)1113-1123
Number of pages11
JournalEuropean Polymer Journal
Volume47
Issue number5
DOIs
StatePublished - May 2011

Bibliographical note

Funding Information:
The authors thankfully acknowledge the financial assistance provided by Center of Research Excellence in Petroleum Refining and Petrochemicals (under Grant CoRE-PRP # 8 ) established by the Saudi Ministry of Higher Education at King Fahd University of Petroleum and Minerals (the Host University), Dhahran, Saudi Arabia.

Keywords

  • Polybetaine
  • Polyelectrolyte
  • Polyphosphonobetaine
  • Salt effects
  • Stimuli responsive
  • pH-responsive

ASJC Scopus subject areas

  • General Physics and Astronomy
  • Polymers and Plastics
  • Organic Chemistry
  • Materials Chemistry

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