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Modification of TiO2 by Bimetallic Au-Cu Nanoparticles for Wastewater Treatment

机译:双金属金铜纳米粒子修饰TiO2用于废水处理

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摘要

Au, Cu and bimetallic Au-Cu nanoparticles were synthesized on the surface of commercial TiO2 compounds (P25) by reduction of the metal precursors with tetrakis (hydroxymethyl) phosphonium chloride (THPC) (0.5 % in weight). The alloyed structure of Au-Cu NPs was confirmed by HAADF-STEM, EDS, HRTEM and XPS techniques. The photocatalytic properties of the modified TiO2 have been studied for phenol photodegradation in aqueous suspensions under UV-visible irradiation. The modification by the metal nanoparticles induces an increase in the photocatalytic activity. The highest photocatalytic activity is obtained with Au-Cu/TiO2 (Au/Cu 1:3). Their electronic properties have been studied by time resolved microwave conductivity (TRMC) to follow the charge-carrier dynamics. TRMC measurements show that the TiO2 modification with Au, Cu and Au-Cu nanoparticles plays a role in charge-carrier separations increasing the activity under UV-light. Indeed, the metal nanoparticles act as a sink for electron, decreasing the charge carrier recombination. The TRMC measurements show also that the bimetallic Au-Cu nanoparticles are more efficient in electron scavenging than the monometallic Au and Cu ones.
机译:通过用四(羟甲基)氯化chloride(THPC)(0.5%重量)还原金属前体,在商业TiO2化合物(P25)的表面上合成了Au,Cu和双金属Au-Cu纳米颗粒。通过HAADF-STEM,EDS,HRTEM和XPS技术证实了Au-Cu NPs的合金结构。研究了改性TiO2的光催化性能,用于紫外可见光下水悬浮液中苯酚的光降解。金属纳米颗粒的改性引起光催化活性的增加。 Au-Cu / TiO2(Au / Cu 1:3)可获得最高的光催化活性。通过时间分辨微波电导率(TRMC)研究了它们的电子性能,以遵循电荷载流子动力学。 TRMC测量表明,用Au,Cu和Au-Cu纳米粒子修饰的TiO2在电荷载流子分离中发挥作用,从而增加了紫外线的活性。实际上,金属纳米颗粒充当电子的吸收体,从而减少了电荷载流子的复合。 TRMC测量结果还表明,双金属Au-Cu纳米颗粒比单金属Au和Cu纳米颗粒在电子清除方面更有效。

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