聚酯纤维
生物降解
材料科学
异山梨酯
甘油
弹性体
可生物降解聚合物
丁二醇
聚己内酯
结冷胶
玻璃化转变
聚丁二酸丁二醇酯
聚合物
高分子化学
复合材料
有机化学
化学
食品科学
发酵
作者
Jiao Li,Shuai Tang,Yonglai Lu,Zhao Wang,Liqun Zhang
标识
DOI:10.1002/marc.202500262
摘要
Conventional chewing gum (CG) consisting of sweeteners and unbiodegradable chewing gum base (CGB) has caused severe pollution to the environment. To address this issue, this work designs and synthesizes a partially crosslinked biobased and biodegradable polyester elastomer to replace the high molecular weight rubber in traditional CG for elasticity, along with a biobased biodegradable polyester resin with a glass transition temperature (Tg) of ≈38 °C to provide plasticity for CG. Subsequently, biobased biodegradable CG is prepared. Poly(1,3-propanediol/glycerol/sebacate/succinate) (PPGSeSu) elastomers with adjustable gel content and good elasticity are synthesized by adjusting the content of glycerol, and poly(2,3-butanediol/isosorbide/succinate) (PBIS) resins with a Tg of 8-65 °C are prepared by tuning the molar ratio of isosorbide and 2,3-butanediol. As a result, fully biobased, biodegradable CG with similar performance to that of commercially available ones is achieved by using PPGSeSu-25%P (with 8.58% gel content) and PB50I50S (Tg = 38 °C). The biodegradation rate of the new CG is 75.52% after 97 d, and its chewing properties are comparable to those of commercially available CG according to the texture profile analysis results.
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