首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Novel Fenton-like catalyst gamma-Cu-Al2O3-Bi12O15Cl6 with electron-poor Cu centre and electron-rich Bi centre for enhancement of phenolic compounds degradation and H2O2 utilization: The synergistic effects of sigma-Cu-ligand, dual-reaction centres and oxygen vacancies
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Novel Fenton-like catalyst gamma-Cu-Al2O3-Bi12O15Cl6 with electron-poor Cu centre and electron-rich Bi centre for enhancement of phenolic compounds degradation and H2O2 utilization: The synergistic effects of sigma-Cu-ligand, dual-reaction centres and oxygen vacancies

机译:新型芬顿催化剂γ-Cu-Al2O3-Bi12O15Cl6,具有电子贫铜中心和电子富含电子的BI中心,用于增强酚类化合物降解和H2O2利用率:Sigma-Cu-配体,双反应中心和氧气的协同作用 空缺

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Novel Fenton-like catalyst gamma-Cu-Al2O3-Bi12O15Cl6 with electron-poor Cu centre and electron-rich Bi centre was synthesized for selective degradation of phenolic compounds. Different from electron-rich Cu centre catalysts, the electron-poor Cu centre, which was induced by high electronegativity of Bi, could facilitate the formation of sigma-Cu-ligand with phenolic compounds. On one hand, H2O2 could directly oxidize sigma-Cu-ligand to HO-adduct radicals with the generation of (OH)-O-center dot. Meanwhile, Cu(II) in the sigma-Cu(II) complexes could be reduced to Cu(I) by oxidization of the HO-adduct radicals to hydroxylation products. Such reaction not only prevented Cu(II) from oxidizing H2O2 to HO2 center dot/O-2(center dot) - but also enhanced the redox cycle of Cu(II)/Cu(I), which improved the catalytic activity and H2O2 utilization. On the other hand, although the sigma-Cu-ligand was gradually decreased with the decrease of phenolic compounds, dual-reaction centre played the dominant role in catalytic reaction. In addition, large amounts of oxygen vacancies (OVs) are formed in Bi12O15Cl6 during the calcining process (BiOCl -> Bi12O15Cl6), which can also increase the generation of OH. Thus, both electron-rich Bi center and OVs could still reduce H2O2 to center dot OH for organics degradation even without the formation of sigma-Cu-ligand. Being attributed to the synergistic effect of sigma-Cu-ligand, dual-reaction centre and OVs mentioned above, gamma-Cu-Al2O3-Bi12O15Cl6 achieved high catalytic activity for phenolic compounds degradation and utilization efficiency of H2O2 (eta). In addition, various analytic methods (XPS, TPR, FT-IR, Raman, EPR and solid-state EPR) were used to prove the synergistic effect of the electron-poor/rich centre, sigma-Cu-ligand and OVs of catalyst.
机译:合成了具有电子贫铜中心和电子富含电子的BI中心的新型FENTON催化剂γ-CU-AL2O3-BI12O15CL6以选择性降解酚类化合物。通过富含电子的Cu中心催化剂,通过BI的高电负性诱导的电子贫铜Cu中心可以促进与酚类化合物的Sigma-Cu-配体的形成。一方面,通过产生(OH)-O中心点,H 2 O 2可以将Sigma-Cu-配体直接氧化成Ho补充基团。同时,通过氧化Ho加合物的羟基化产物,可以将Sigma-Cu(II)复合物中的Cu(II)降低至Cu(I)。这种反应不仅防止Cu(II)氧化H2O2至HO2中心点/ O-2(中心点) - 而且增强了Cu(II)/ Cu(I)的氧化还原循环,其改善了催化活性和H2O2利用率。另一方面,尽管随着酚类化合物的降低逐渐降低,但是双反应中心在催化反应中发挥了显着作用。此外,在煅烧过程(BioCl - > Bi12O15Cl6)期间,在Bi12O15Cl6中形成大量的氧空位(OV),其也可以增加of的产生。因此,即使在不形成Sigma-Cu-配体的情况下,也可以将富含电子的双中心和OVS减少H2O2至中心点OH以进行有机性劣化。归因于Sigma-Cu-配体的协同作用,上述双反应中心和OV,γ-Cu-Al2O3-Bi12O15Cl6为H2O2(ETA)的酚类化合物降解和利用效率而获得了高催化活性。此外,使用各种分析方法(XPS,TPR,FT-IR,拉曼,EPR和固态EPR)来证明催化剂的电子贫毛/富集中心,Sigma-Cu - 配体和OV的协同效应。

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