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Synergetic effect of dual co-catalysts on the activity of BiVO4 for photocatalytic carbamazepine degradation

机译:双助催化剂对光催化碳碱降解的双辅助催化剂对BIVO4活性的协同作用

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An efficient visible-light driven three components photocatalyst for carbamazepine (CBZ) degradation has been assembled by co-loading reduction cocatalyst Pt and oxidation cocatalyst Co _(3) O _(4) (MnO _( x ) ) on BiVO _(4) . The apparent rate constant of the three components photocatalyst Pt/BiVO _(4) /Co _(3) O _(4) for degradation of CBZ is 54 times that of Co _(3) O _(4) /BiVO _(4) and 2.5 times that of Pt/BiVO _(4) , which shows a synergetic effect in the photocatalytic activity. The same synergetic effect is also observed for Pt/BiVO _(4) /MnO _( x ) . The spatial separation of the reduction and oxidation cocatalysts could reduce the recombination of the photogenerated charges, which mainly accounts for the high photocatalytic activity of the three components photocatalyst. The photocatalytic intermediates of CBZ were detected by HPLC-ESI-MS, and a deductive degradation pathway of CBZ was proposed.
机译:一种高效的可见光驱动的三种组分,用于通过共加载还原助催化剂Pt和氧化助催化剂CO _(3)O _(4)(MNO _(x))在BIVO _(4)上组装了用于卡巴马嗪(CBZ)降解的三分催化剂)。 CBZ降解的三种组分光催化剂PT / BIVO _(4)/ CO_(4)/ CO _(3)O _(4)的表观速率常数为CBZ的劣化是CO _(3)O _(4)/ BIVO _()的54倍4)和Pt / Bivo _(4)的2.5倍,其显示了光催化活性的协同作用。对于Pt / BIVO _(4)/ mnO _(x)也观察到相同的协同效果。还原和氧化助催化剂的空间分离可以减少光催化电荷的重组,这主要考虑三种组分光催化剂的高光催化活性。通过HPLC-ESI-MS检测CBZ的光催化中间体,提出了CBZ的演绎降解途径。

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