Literature DB >> 18444667

Surface characterization of biocidal polyurethane modifiers having poly(3,3-substituted)oxetane soft blocks with alkylammonium side chains.

Pinar Kurt1, Lara J Gamble, Kenneth J Wynne.   

Abstract

This paper focuses on surface characterization of P[ AB] copolyoxetane soft block polyurethanes having either fluorous (3FOx, -CH2OCH 2CF3) or PEG-like (ME2Ox, -CH2(OCH2CH2) 2OCH3), A side chains and alkylammonium, B side chains. Physical surface characterization data were analyzed in light of the previously observed order of antimicrobial effectiveness for a set of four surface modifiers. Ample physical evidence for surface concentration of fluorous 2 wt % P[ AB]-polyurethane modifiers was obtained from XPS, contact angles, ATR-IR spectroscopy, and TM-AFM. In TM-AFM phase imaging, the most effective biocidal surface modifier, 2 wt % HMDI-BD(30)/P[(3FOx)(C12)-0.89:0.11]-PU, showed a nanoscale phase-separated structure consisting of 200 nm domains with background features about 10 times smaller. Despite similar surface characterization data, the 2 wt % fluorous C6 analog ranked third in contact biocidal effectiveness. Physical evidence for surface concentration of 2 wt % P[(ME2Ox)(C12)-0.86:0.14]-PU was modest, considering that antimicrobial effectiveness was second only to 2 wt % HMDI-BD(30)/P[(3FOx)(C12)-0.89:0.11]-PU. In this set of surface modifiers, nanoscale morphology is largely driven by the fluorous component, whereas antimicrobial effectiveness is more strongly influenced by alkylammonium chain length. The effect of alkylammonium side chain length on surface concentration and antimicrobial behavior is more pronounced for ME2Ox polyurethanes compared to the 3FOx analogs.

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Year:  2008        PMID: 18444667     DOI: 10.1021/la800203y

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  3 in total

1.  A Polyurethane Surface Modifier: Contrasting Amphiphilic and Contraphilic Surfaces Driven by block and random Soft Blocks having Trifluoroethoxymethyl and PEG Side Chains.

Authors:  Wei Zhang; Tomoko Fujiwara; Hűmeyra Taşkent; Ying Zheng; Kennard Brunson; Lara Gamble; Kenneth J Wynne
Journal:  Macromol Chem Phys       Date:  2012-07-26       Impact factor: 2.527

2.  Immobilization of amphiphilic polycations by catechol functionality for antimicrobial coatings.

Authors:  Hua Han; Jianfeng Wu; Christopher W Avery; Masato Mizutani; Xiaoming Jiang; Masami Kamigaito; Zhan Chen; Chuanwu Xi; Kenichi Kuroda
Journal:  Langmuir       Date:  2011-03-10       Impact factor: 4.331

3.  High antimicrobial effectiveness with low hemolytic and cytotoxic activity for PEG/quaternary copolyoxetanes.

Authors:  Allison King; Souvik Chakrabarty; Wei Zhang; Xiaomei Zeng; Dennis E Ohman; Lynn F Wood; Sheena Abraham; Raj Rao; Kenneth J Wynne
Journal:  Biomacromolecules       Date:  2014-01-22       Impact factor: 6.988

  3 in total

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