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Polycondensation of this biobased long\u2010chain <jats:italic>\u03b1,\u03c9<\/jats:italic>\u2010dicarboxylic acid with hexacosane\u20101,26\u2010diol (<jats:bold>BB<\/jats:bold>), generated from the former by reduction, yielded the polyester 26,26. Monomer <jats:bold>AA<\/jats:bold> was also polymerized with short\u2010chain alkanediols, namely dodecane\u20101,12\u2010diol and butane\u20101,4\u2010diol, generating polyesters 12,26 and 4,26, respectively. The properties of these aliphatic polyesters were investigated by various techniques, revealing high crystallinity, melting, and degradation temperatures, depending on the monomers used. These materials are an attractive alternative to fossil resource\u2010based polymeric materials.<\/jats:p>","DOI":"10.1002\/macp.201200332","type":"journal-article","created":{"date-parts":[[2012,8,31]],"date-time":"2012-08-31T09:55:40Z","timestamp":1346406940000},"page":"2220-2227","source":"Crossref","is-referenced-by-count":83,"title":["Plant Oil\u2010Based Long\u2010Chain C<sub>26<\/sub> Monomers and Their Polymers"],"prefix":"10.1002","volume":"213","author":[{"given":"Carla","family":"Vilela","sequence":"first","affiliation":[]},{"given":"Armando J. D.","family":"Silvestre","sequence":"additional","affiliation":[]},{"given":"Michael A. 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