Self‐controlled synthesis of hyperbranched poly(ether‐ketone)s from A2 + B3 approach in poly(phosphoric acid) |
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Authors: | In‐Yup Jeon Loon‐Seng Tan Jong‐Beom Baek |
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Affiliation: | 1. School of Nano Bio Chemical Engineering, Ulsan National Institute of Science and Technology (UNIST), 194, Banyeon, Ulsan, 689‐805 South Korea;2. Nanostructured and Biological Materials Branch, Materials and Manufacturing Directorate, Air Force Research Laboratory, AFRL/RXBN, Wright‐Patterson Air Force Base, Dayton, Ohio 45433‐7750;3. Tel: +82‐52‐217‐2510;4. Fax: + 82‐52‐217‐2509 |
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Abstract: | Self‐controlled synthesis of hyperbranched poly(ether‐ketone)s (HPEKs) were prepared from “A2 + B3” approach by using different monomer solubility in reaction medium. 1,3,5‐Triphenoxybenzene as a hydrophobic B3 monomer was reacted with commercially available terephthalic acid or 4,4′‐oxybis(benzoic acid) as a hydrophilic A2 monomer in a hydrophilic reaction medium, polyphosphoric acid (PPA)/phosphorous pentoxide (P2O5). The resultant HPEKs were soluble in various common organic solvents and had the weight‐average molecular weight in the range of 3900–13,400 g/mol. The results implied that HPEKs were branched structures instead of crosslinked polymers. The molecular sizes and shapes of HPEKs were further assured by morphological investigation with scanning electron microscopy (SEM) and atomic force microscopy (AFM). Hence, the applied polymerization condition was indeed strong enough to efficiently facilitate polycondensation via “direct” Friedel‐Crafts reaction without gelation. It could be concluded that the polymer forming reaction was kinetically controlled by automatic and slow feeding of the hydrophobic B3 monomer into the hydrophilic reaction mixture containing hydrophilic comonomer. As a result, hyperbranched structures were formed instead of crosslinked polymers even at full conversion (equifunctional monomer feed ratio). © 2009 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 47: 3326–3336, 2009 |
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Keywords: | Friedel‐Crafts acylation high performance polymer hyperbranched polymer poly(ether‐ketone)s poly(phosphoric acid) |
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