惰性
单线态氧
催化作用
人体净化
污染物
过氧化物
材料科学
工作(物理)
氧化还原
氧气
偶极子
化学工程
产量(工程)
过氧化氢
化学
组合化学
光化学
环境化学
力矩(物理)
纳米技术
水处理
无机化学
臭氧
清除
单重态
污染
芯(光纤)
有机化学
惰性气体
有机化合物
活性氧
分子
还原剂
多相催化
有机化学品
作者
Yu‐Hang Li,Mingyi Liu,Y LI,Yaran Bai,Fu‐Xue Wang,Xiaoyi Hu,Xiaoguang Duan,Haodong Ji
摘要
ABSTRACT The utilization efficiencies of peroxide and the evolved reactive species are typically low in advanced oxidation processes due to their self‐quenching or scavenging by background factors in water matrices. Here, we design a new Co‐based metal‐organic framework (PKU‐24) with a six‐coordinate structure that induces strong electron localization and suppresses the redox activity of Co sites, thereby blocking the electron‐transfer pathway. Interestingly, electron‐rich pollutants with oriented dipole moments can act as molecular “switches”, effectively turning on PKU‐24 activity for peroxymonosulfate (PMS) activation. Computations reveal that the dipole moment of pollutants is the decisive descriptor governing the behavior of organic contaminants in activating inert Co centers and reopening the electron‐transfer channel to mediate SO 5 •− toward selective singlet oxygen generation. Additionally, this work develops a large‐scale synthesis method for PKU‐24 with a single synthesis yield of ∼0.55 kg (costing ∼0.52 USD g −1 ) and achieves long‐term, efficient, continuous treatment of organic wastewater. This work introduces a new principle for the design of pollutant‐sensitive Fenton‐like catalysts to achieve effective organic elimination while significantly reducing peroxide consumption.
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