材料科学
硅橡胶
有机硅
天然橡胶
机械化学
硅酮
聚合物
硅氧烷
硫化
复合材料
弹性体
填料(材料)
原材料
高分子科学
丁基橡胶
可生物降解聚合物
聚二甲基硅氧烷
合成橡胶
紧迫的
作者
Hu Xu,Qi Wu,Jinrong Wu
摘要
Silicone rubber is indispensable in modern life owing to its exceptional thermal resistance, chemical inertness and long-term stability. However, the robustness of its Si-O-Si backbone makes it among the most difficult materials to recycle, leading to persistent waste accumulation and serious environmental concerns. Herein, we report a boron-assisted thermomechanical scission (BATS) upcycling strategy that directly converts crosslinked silicone rubber waste into high-value polyborosiloxane (PBS), a classic strain-rate-responsive material known as Silly Putty. Under mild conditions, BATS cleaves Si-O-Si backbones and reconstructs them into dynamic Si-O-B linkages, transforming silicone rubber waste into a high-value dynamic polymer through a solvent-free, byproduct-free process. Because this boron-assisted scission process acts directly on siloxane chains, it is broadly applicable to diverse silicone rubber wastes and can be implemented using conventional polymer-processing equipment. Moreover, the resulting PBS exhibits practical utility in impact protection and rate-responsive sensing. To the best of our knowledge, the BATS strategy appears to be the first example of direct polymer-to-polymer upcycling of silicone rubber waste into a substantially higher-value material. This work establishes a general, scalable, and sustainable polymer-to-polymer upcycling platform for silicone rubber waste and offers a promising strategy for advancing a circular organosilicon economy.
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