电子转移
动能
催化作用
材料科学
热液循环
化学工程
原材料
带隙
电子
化学
氧化还原
纳米技术
光化学
光电子学
无机化学
有机化学
物理
工程类
量子力学
作者
Yingtao Sun,Xuanying Cai,Yufeng Lai,Chun Hu,Lai Lyu
标识
DOI:10.1002/advs.202308519
摘要
Abstract Conventional advanced oxidation processes (AOPs) require significant external energy consumption to eliminate emerging contaminants (ECs) with stable structures. Herein, a catalyst consisting of nanocube BiCeO particles (BCO‐NCs) prepared by an impregnation‐hydrothermal process is reported for the first time, which is used for removing ECs without light/electricity or any other external energy input in water and simultaneous in situ generation of H 2 O 2 . A series of characterizations and experiments reveal that dual reaction centers (DRC) which are similar to the valence band/conducting band structure are formed on the surface of BCO‐NCs. Under natural conditions without any external energy consumption, the BCO‐NCs self‐purification system can remove more than 80% of ECs within 30 min, and complete removal of ECs within 30 min in the presence of abundant electron acceptors, the corresponding second‐order kinetic constant is increased to 3.62 times. It is found that O 2 can capture electrons from ECs through the Bi─O─Ce bond bridge during the reaction process, leading to the in situ production of H 2 O 2 . This work will be a key advance in reducing energy consumption for deep wastewater treatment and generating important chemical raw materials.
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