Issue 33, 2012

Thermal polycondensation of poly(diol citrate)s with tethered quaternary ammonium biocides

Abstract

The synthesis and characterization of a series of novel, antimicrobial, aliphatic polyesters based on citric acid, alkanediols, and quaternary ammonium salt (QAS) diols is described. These materials possess a wide range of mechanical and thermal properties (storage modulus, E′ = 1.03–17.53 MPa at 25 °C; Tg = −15.7–38.6 °C) primarily dictated by alkanediol selection and the presence of biocide. Surface analysis via contact angle and FTIR-ATR studies indicate the presence of biocide at the material/air interface providing high antimicrobial activity (5–7 log kill of S. aureus over controls) for all materials containing tethered QAS. Hydrolysis of these cross-linked materials was also highly controlled based on the QAS, alkanediol structure, and curing duration; and significant hydrolysis occurs in as little as 4 weeks.

Graphical abstract: Thermal polycondensation of poly(diol citrate)s with tethered quaternary ammonium biocides

Supplementary files

Article information

Article type
Paper
Submitted
26 Jun 2012
Accepted
22 Oct 2012
First published
23 Oct 2012

RSC Adv., 2012,2, 12824-12834

Thermal polycondensation of poly(diol citrate)s with tethered quaternary ammonium biocides

P. N. Coneski, P. A. Fulmer and J. H. Wynne, RSC Adv., 2012, 2, 12824 DOI: 10.1039/C2RA21286B

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