A pH and redox dual responsive homopolypeptide: synthesis, characterization, and application in “smart” single-walled carbon nanotube dispersion

A homopolypeptide, namely poly( S -(2-carboxylethyl)- l -cysteine) (PCELC), with pH and redox dual responsiveness was prepared by ring-opening polymerization of S -(2-(methoxycarbonyl)ethyl)- l -cysteine based N -carboxyanhydride (MCELC-NCA) and subsequent hydrolysis. The pH-induced solution phase t...

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Veröffentlicht in:Polymer chemistry 2017-12, Vol.8 (45), p.7025-7032
Hauptverfasser: Xiao, Jiang, Tan, Junyan, Jiang, Rujian, He, Xiongliang, Xu, Yanzhi, Ling, Ying, Luan, Shifang, Tang, Haoyu
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Sprache:eng
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Zusammenfassung:A homopolypeptide, namely poly( S -(2-carboxylethyl)- l -cysteine) (PCELC), with pH and redox dual responsiveness was prepared by ring-opening polymerization of S -(2-(methoxycarbonyl)ethyl)- l -cysteine based N -carboxyanhydride (MCELC-NCA) and subsequent hydrolysis. The pH-induced solution phase transition of PCELC was at pH = ∼4.50 as revealed by DLS and UV-vis spectroscopy. The thioether linkages of PCELC can be readily oxidized by H 2 O 2 at 40 °C yielding PCELC ox with sulfoxide and sulfone linkages as revealed by 1 H NMR and FTIR. PCELC ox also showed pH responsiveness with the variation of polymer aggregation sizes, but without solution phase separation. PCELC ox can be partially reduced by 3-mercaptopropionic acid as suggested by 1 H NMR and FTIR analysis. The pH-induced solution phase transition behavior of the reduction product ( i.e. , PCELC re ) was different from that of the as-prepared PCELC. Moreover, PCELC can be used as a pH and oxidation dual responsive stabilizer to control the aggregation of single-walled carbon nanotubes (SWCNTs) in aqueous solution.
ISSN:1759-9954
1759-9962
DOI:10.1039/C7PY01393K