香兰素
醛
缩聚物
聚合物
苯酚
有机化学
木质素
酚类
化学
降级(电信)
甲醛
材料科学
高分子化学
催化作用
计算机科学
电信
作者
Jin Yu,Chengcheng Hu,Jie Wang,Yongliang Ding,Junjie Shi,Zhongkai Wang,Shichao Xu,Liang Yuan
标识
DOI:10.1002/anie.202305677
摘要
Abstract Designing sustainable materials with tunable mechanical properties, intrinsic degradability, and recyclability from renewable biomass through a mild process has become vital in polymer science. Traditional phenolic resins are generally considered to be not degradable or recyclable. Here we report the design and synthesis of linear and network structured phenolic polymers using facile polycondensation between natural aldehyde‐bearing phenolic compounds and polymercaptans. Linear phenolic products are amorphous with T g between −9 °C and 12 °C. Cross‐linked networks from vanillin and its di‐aldehyde derivative exhibited excellent mechanical strength between 6–64 MPa. The connecting dithioacetals are associatively adaptable strong bonds and susceptible to degradation in oxidative conditions to regenerate vanillin. These results highlight the potential of biobased sustainable phenolic polymers with recyclability and selective degradation, as a complement to the traditional phenol‐formaldehyde resins.
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