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Synthesis and Characterization of Thermoresponsive Xylan Networks by Diels–Alder Reaction AITranslate

France|North Carolina State University;North Carolina State University; Université Jean Monnet;North Carolina State University; Université Jean Monnet; Université Jean Monnet; Université Jean Monnet
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Publisher: ACS
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Abstract AITranslate

The last several decades have witnessed notable research in natural and biodegradable polymers for applications that interact with humans or the environment. This research describes the synthesis and characterization of temperature sensitive hemicellulose-based gels. Xylan type hemicellulose was converted into a thermoplastic material via the grafting of short polycaprolactone tails to enhance the material processability. The thermoplastic xylan (xylan-grafted-poly(caprolactone) was functionalized with different amounts of furan rings and allowed to react with bismaleimide through Diels–Alder reaction. The temperature dependent bonding/debonding of the designed networks was evaluated by solubility and rheological assessments. The results indicated that the temperature at which the networks disassemble varies based on the amount of the furan moieties in the initial copolymer and can range between 108.6 and 127.6 °C. The designed networks display promising molecular and synthetic features for the production of high-performance temperature-responsive polymers from renewable resources.

KeyWords AITranslate

biomaterials reversible gelling Diels−Alder chemistry xylan thermoreversibility
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Basic Information:

DOI:https://doi.org/10.1021/acsapm.9b00095

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Citation Information:

The last several decades have witnessed notable research in natural and biodegradable polymers for applications that interact with humans or the environment. This research describes the synthesis and characterization of temperature sensitive hemicellulose-based gels. Xylan type hemicellulose was converted into a thermoplastic material via the grafting of short polycaprolactone tails to enhance the material processability. The thermoplastic xylan (xylan-grafted-poly(caprolactone) was functionalized with different amounts of furan rings and allowed to react with bismaleimide through Diels–Alder reaction. The temperature dependent bonding/debonding of the designed networks was evaluated by solubility and rheological assessments. The results indicated that the temperature at which the networks disassemble varies based on the amount of the furan moieties in the initial copolymer and can range between 108.6 and 127.6 °C. The designed networks display promising molecular and synthetic features for the production of high-performance temperature-responsive polymers from renewable resources.

quote

GB/T 7714-2015 [1] Wissam Farhat, Richard Venditti, Frederic Becquart, et al. ACS Applied Polymer Materials, 2019(1). DOI:10.1021/acsapm.9b00095.
MLA [1] Wissam Farhat, et al., ACS Applied Polymer Materials, no. 1, 2019, https://doi.org/10.1021/acsapm.9b00095.
APA [1] Wissam Farhat, Richard Venditti, Frederic Becquart, Ali Ayoub, JeanCharles Majesté, Mohamed Taha, & Nathalie Mignard. (2019). ACS Applied Polymer Materials(1). https://doi.org/10.1021/acsapm.9b00095
IEEE [1] Wissam Farhat, Richard Venditti, Frederic Becquart, Ali Ayoub, JeanCharles Majesté, Mohamed Taha, and Nathalie Mignard, ACS Applied Polymer Materials, no. 1, 2019, doi: 10.1021/acsapm.9b00095. keywords: {biomaterials;reversible gelling;Diels−Alder chemistry;xylan;thermoreversibility}