材料科学
超分子化学
矿化(土壤科学)
聚苯乙烯
光催化
微塑料
吸附
催化作用
聚合物
化学工程
聚乙烯
氢键
聚碳酸酯
纳米技术
超分子聚合物
生物矿化
纳米复合材料
聚对苯二甲酸乙二醇酯
共聚物
超分子组装
混合材料
表面改性
作者
Xinghao Qi,Qixin Zhou,Chuanzhe Wang,Yizhou Yan,Yan Guo,Jinbo Xue,Yunfei Zhu
标识
DOI:10.1002/adfm.202527581
摘要
ABSTRACT Microplastics accumulate widely in aquatic systems, posing ecological risks. Thus, they require mineralization to inorganic products, yet this is slow under natural sunlight. We present a crystalline naphthalimide supramolecular assembly (NDINH) that promotes photocatalytic mineralization by tuning weak interfacial forces. NDINH forms synergistic π–π contacts and N─H···N≡C hydrogen bonds with polymer surfaces, with adsorption energy 0.327 eV, 2–3.5 times higher than inorganic photocatalysts. This pre‐concentration enhances interfacial transport to accelerate mineralization. Under AM1.5G, NDINH removes 92.2% acrylonitrile‐butadiene‐styrene terpolymer (ABS) in 12 h, k = 0.078 h −1 , over 400‐fold faster than natural photoaging, with >85% mineralization. Multi‐scale mechanism studies indicate an early ·OH‐dominated attack that depolymerizes polymers, followed by hhole‐drivenoxidation to inorganic species. NDINH degrades polyethylene terephthalate (PET), polycarbonate (PC) and polystyrene (PS) in seawater, river and tap water, and retains activity through a self‐healing supramolecular network. The interfacial strategy connects supramolecular design to principles for solid‐solid catalysis materials and outlines scalable paths to microplastic degradation.
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