双功能
阴极
机制(生物学)
化学
材料科学
纳米技术
催化作用
物理化学
物理
有机化学
量子力学
作者
Fangshu Xie,Ying Gao,Jingbin Zhang,Huiling Bai,Jianfeng Zhang,Zhihua Li,Weihuang Zhu
标识
DOI:10.1016/j.electacta.2022.141099
摘要
External addition of Fe 2+ is commonly required for the sake of activating H 2 O 2 in electro-Fenton, which limits the reaction continuity and causes the potential secondary pollution. Herein, a novel bifunctional cathode (rGO/MIL-88A/CF) was fabricated for achieving the in-situ H 2 O 2 generation and activation simultaneously. The rotating disc electrode (RDE) test showed that the average electron transfer number was about 2.01, indicating that selective two-electron reduction of oxygen molecule (2e – ORR) occurred on the as-prepared cathode. The quenching experiments and EPR tests proved that the oxygen-containing reactive species such as OH • and O 2 •– could be efficiently generated on rGO/MIL-88A/CF cathode, which contributed to the pollutant degradation. The obtained rGO/MIL-88A/CF cathode not only obtained the improvement of its charge transfer rate owing to the modification by the reduced graphene (rGO), but also acted as a stable activator for the electro-generated H 2 O 2 without additional reagents. Moreover, rGO/MIL-88A/CF cathode effectively facilitated the circulation of Fe 2+ /Fe 3+ through cathodic reduction, which consequently enhanced the performance of the electro-Fenton. Our current investigation presented a feasible example of a novel bifunctional cathode applied in electro-Fenton towards efficient pollutant removal without exogenous H 2 O 2 activator.
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