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Ag-doped ZnO nanorods embedded reduced graphene oxide nanocomposite for photo-electrochemical applications

机译:用于光电化学应用的Ag掺杂的ZnO纳米棒嵌入式氧化石墨烯纳米复合材料

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摘要

In this paper, the Ag-doped zinc oxide nanorods embedded reduced graphene oxide (ZnO:Ag/rGO) nanocomposite was synthesized for photocatalytic degradation of methyl orange (MO) in the water. The microstructural results confirmed the successful decoration of Ag-doped ZnO nanorods on rGO matrix. The photocatalytic properties, including photocatalytic degradation, charge transfer kinetics and photocurrent generation, are systematically investigated using electrochemical impedance spectroscopy (EIS), photocurrent transient response (PCTR) and open circuit voltage decay (OCVD). The results of photocatalytic dye degradation measurements indicated that ZnO:Ag/rGO nanocomposite is more effective than pristine ZnO to degrade the MO dye, and the degradation rate reached 40.6% in 30 min. The decomposition of MO with ZnO:Ag/rGO nanostructure followed first-order reaction kinetics with a reaction rate constant (Ka) of 0.01746 min−1. The EIS, PCTR and OCVD measurements revealed that the Ag doping and incorporation of rGO could suppress the recombination probability in ZnO by the separation of photo-generated electron–hole pairs, which leads to the enhanced photocurrent generation and photocatalytic activity. The photocurrent density of ZnO:Ag/rGO, ZnO/rGO and pristine ZnO are 206, 121.4 and 88.8 nA cm−2, respectively.
机译:本文合成了掺杂掺杂的氧化锌氧化物纳米块(ZnO:Ag / Rgo)纳米复合材料,用于在水中的甲基橙(Mo)的光催化降解。微观结构结果证实了RGO基质上的Ag掺杂ZnO纳米棒的成功装饰。使用电化学阻抗谱(EIS),光电流瞬态响应(PCTR)和开路电压衰减(OCVD)系统地研究了光催化性能,包括光催化降解,电荷转移动力学和光电流产生。光催化染料降解测量结果表明,ZnO:Ag / Rgo纳米复合材料比原始ZnO更有效,以降解Mo染料,并且在30分钟内降解速率达到40.6%。用ZnO:Ag / Rgo纳米结构的Mo的分解如0.01746 min-1的反应速率常数(Ka)的一阶反应动力学。 EIS,PCTR和OCVD测量显示,通过分离光产生的电子空穴对,Ag掺杂和Rgo的掺入可以抑制ZnO中的重组概率,这导致增强的光电流产生和光催化活性。 ZnO:Ag / Rgo,ZnO / RGO和原始ZnO的光电流密度分别为206,121.4和88.8纳CM-2。

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