聚氨酯
热固性聚合物
原材料
试剂
环氧树脂
材料科学
3D打印
高分子科学
缩二脲试验
产品(数学)
涂层
造型(装饰)
最终产品
工艺工程
化学工程
商品
合成树脂
体积热力学
粉末涂料
复合材料
预聚物
聚合物
结构材料
纳米技术
3d打印
作者
Yan Huang,Xiaoxiao Guo,Yi Deng,S Ye,Yanling Zhu,Zenghe Liu,Jianwen Chen,Yutian Zhu
标识
DOI:10.1038/s41467-026-70951-w
摘要
Polyurethane waste poses significant environmental challenges due to its large bulk volume and thermoset nature. Current recycling methods suffer from high reagent consumption, urethane byproduct generation, and limited economic value. Here, we well address these issues through a selective cleavage-crosslink strategy using food-grade ethyl acetoacetate (EAA) to break biuret crosslinks while preserving urethane/urea bonds in non-crosslinked regions virtually intact. This strategy minimizes reagent consumption and avoids urethane byproduct. Importantly, the deconstructed product can be fully upcycled to high value-added photocuring 3D printing products with an exceptionally high waste content (up to ~90%) and excellent mechanical properties. Beyond 3D printing, the deconstructed product also holds potential as raw material for adhesives, PU synthesis, and epoxy modifiers. This strategy uses inexpensive commercial reagents and requires no modification to existing polyurethane infrastructure, establishing a commercially implementable pathway for polyurethane waste recycling.
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