催化作用
氧化磷酸化
化学
高分子化学
链条(单位)
材料科学
有机化学
生物化学
物理
天文
作者
Qiang Zhang,Jiajia He,Xiangyue Wei,Chengfeng Shen,Pengbo Ye,Wenli An,Xuehui Li,Haoze Li,Shimei Xu,Zhishan Su,Yu-Zhong Wang
标识
DOI:10.1002/ange.202407510
摘要
Plastic pollution is an emerging global threat due to lack of effective methods for transforming waste plastics into useful resources. Here, we demonstrate a direct oxidative upcycling of polyethylene into high‐value and high‐volume long chain (C10‐C20) saturated dicarboxylic acids in high carbon yield of 85.9% over cobalt‐doped MCM‐41 molecular sieves, in the absence of any solvent or precious metal catalyst. The distribution of the dicarboxylic acids can be controllably adjusted from short‐chain (C4‐C10) to long‐chain ones (C10‐C20) through changing cobalt loading of MCM‐41 under nanoconfinement. Highly and sparsely dispersed cobalt along with confined space of mesoporous structure enables complete degradation of polyethylene and high selectivity of dicarboxylic acid in mild condition. So far, this is the first report on highly selective one‐step preparation of long chain dicarboxylic acids. The approach provides an attractive solution to tackle plastic pollution and a promising alternative route to long chain diacids.
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