首页> 美国卫生研究院文献>Materials >Photocatalytic Performance of CuxO/TiO2 Deposited by HiPIMS on Polyester under Visible Light LEDs: Oxidants Ions Effect and Reactive Oxygen Species Investigation
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Photocatalytic Performance of CuxO/TiO2 Deposited by HiPIMS on Polyester under Visible Light LEDs: Oxidants Ions Effect and Reactive Oxygen Species Investigation

机译:在可见光LED下HiPIMS沉积在聚酯上的CuxO / TiO2的光催化性能:氧化剂离子效应和活性氧种类的研究

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摘要

In the present study, we propose a new photocatalytic interface prepared by high-power impulse magnetron sputtering (HiPIMS), and investigated for the degradation of Reactive Green 12 (RG12) as target contaminant under visible light light-emitting diodes (LEDs) illumination. The CuxO/TiO2 nanoparticulate photocatalyst was sequentially sputtered on polyester (PES). The photocatalyst formulation was optimized by investigating the effect of different parameters such as the sputtering time of CuxO, the applied current, and the deposition mode (direct current magnetron sputtering, DCMS or HiPIMS). The results showed that the fastest RG12 degradation was obtained on CuxO/TiO2 sample prepared at 40 A in HiPIMS mode. The better discoloration efficiency of 53.4% within 360 min was found in 4 mg/L of RG12 initial concentration and 0.05% Cuwt/PESwt as determined by X-ray fluorescence. All the prepared samples contained a TiO2 under-layer with 0.02% Tiwt/PESwt. By transmission electron microscopy (TEM), both layers were seen uniformly distributed on the PES fibers. The effect of the surface area to volume (dye volume) ratio (SA/V) on the photocatalytic efficiency was also investigated for the discoloration of 4 mg/L RG12. The effect of the presence of different chemicals (scavengers, oxidant or mineral pollution or salts) in the photocatalytic medium was studied. The optimization of the amount of added hydrogen peroxide (H2O2) and potassium persulfate (K2S2O8) was also investigated in detail. Both, H2O2 and K2S2O8 drastically affected the discoloration efficiency up to 7 and 6 times in reaction rate constants, respectively. Nevertheless, the presence of Cu (metallic nanoparticles) and NaCl salt inhibited the reaction rate of RG12 discoloration by about 4 and 2 times, respectively. Moreover, the systematic study of reactive oxygen species’ (ROS) contribution was also explored with the help of iso-propanol, methanol, and potassium dichromate as OH radicals, holes (h+), and superoxide ion-scavengers, respectively. Scavenging results showed that O2 played a primary role in RG12 removal; however, OH radicals’ and photo-generated holes’ (h+) contributions were minimal. The CuxO/TiO2 photocatalyst was found to have a good reusability and stability up to 21 cycles. Ions’ release was quantified by means of inductively coupled plasma mass spectrometry (ICP-MS) showing low Cu-ions’ release.
机译:在本研究中,我们提出了一种由大功率脉冲磁控溅射(HiPIMS)制备的新光催化界面,并研究了在可见光发光二极管(LED)照明下作为目标污染物的反应性绿色12(RG12)的降解。将CuxO / TiO2纳米颗粒光催化剂顺序溅射到聚酯(PES)上。通过研究不同参数的影响(例如CuxO的溅射时间,施加的电流和沉积模式(直流磁控溅射,DCMS或HiPIMS)),优化了光催化剂的配方。结果表明,在HiPIMS模式下以40 A制备的CuxO / TiO2样品获得最快的RG12降解。通过X射线荧光测定,在4 mg / L RG12初始浓度和0.05%Cuwt / PESwt中,发现360分钟内的53.4%更好的脱色效率。所有制备的样品均包含具有0.02%Tiwt / PESwt的TiO2底层。通过透射电子显微镜(TEM),可见两层均匀地分布在PES纤维上。对于4 mg / L RG12的变色,还研究了表面积与体积(染料体积)之比(SA / V)对光催化效率的影响。研究了光催化介质中不同化学物质(清除剂,氧化剂或矿物污染或盐)的存在的影响。还详细研究了过氧化氢(H2O2)和过硫酸钾(K2S2O8)添加量的优化。 H2O 2 和K 2 S 2 O 8 都显着影响脱色效率,分别高达7倍和6倍在反应速率常数。尽管如此,铜(金属纳米颗粒)和氯化钠盐的存在分别抑制了RG12变色的反应速率约4倍和2倍。此外,还利用异丙醇,甲醇和重铬酸钾作为 OH自由基,空穴(h + < / sup>)和超氧化物清除剂。清除结果表明,O 2 -在RG12的去除中起主要作用。但是, OH自由基和光生空穴(h + )的贡献很小。发现Cu x O / TiO 2 光催化剂具有良好的可重复使用性和高达21个循环的稳定性。离子的释放通过电感耦合等离子体质谱法(ICP-MS)进行定量,显示出低的铜离子释放。

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