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Highly efficient photocatalytic performance of Cu 2O@TiO 2 nanocomposite: influence of various inorganic oxidants and inorganic anions

机译:Cu的高效光催化性能Cu 2 O @ TIO 2 纳米复合材料:各种无机氧化剂的影响和无机阴离子

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This work offers the facile synthesis of Cu2O@TiO2nanocomposites by solid state reaction towards the elimination of Acid-Red 8 (AR8) dye as a target pollutant model through the photocatalytic oxidation system. Another goal is to assess the capacity of various inorganic oxidants that act as alternative electron acceptor for Cu2O@TiO2mediated photocatalytic oxidation. The prepared nanocomposite was analyzed by various analysis instruments, and their photocatalytic performance was systemically assessed with respect to the removal of AR8 dye. Upon irradiation, compared to pure Cu2O and pure TiO2alone, the Cu2O@TiO2has exhibited a higher photocatalytic performance which show that the combining TiO2(n-type) with Cu2O (p-type) has been improved the electron mobility and subsequently decreasing the rate of electron-hole recombination. A kinetic study is confirmed that the degradation of AR8 has been obeyed the pseudo-first-order model. The perfection of the photocatalytic activity is achieved by using various inorganic oxidants such as; H2O2, Na2S2O8and NaIO4so as to produce an electron scavenger. Also, the apparent rate constant (kapp) and apparent quantum yield (Qapp) are higher for all oxidants than without oxidants, while is lower in terms of electrical energy per order (EEO) and half-life time (t0.5). Periodate ion has considered the most efficient oxidant when compared with other oxidants for enhancing the photocatalytic activity via the formation of various reactive oxygen species. The degradation efficiency of these catalytic systems could be arranged in an ascending order: Cu2O@TiO2/ NaIO4?>?Cu2O@TiO2/Na2S2O8?>?Cu2O@TiO2/H2O2?>?Cu2O?>?TiO2.
机译:通过光催化氧化系统,通过固态反应通过固态反应,通过固态反应,通过光催化氧化系统将酸红8(AR8)染料作为靶污染物模型的固态反应提供Cu2O @ TiO2NAnoC复合物的容纳合成。另一个目标是评估作为Cu2O @ TiO2介导的光催化氧化的替代电子受体的各种无机氧化剂的能力。通过各种分析仪器分析制备的纳米复合材料,并在其去除AR8染料方面全身评估它们的光催化性能。在照射时,与纯Cu 2O和纯钛,TiO 2和纯TiO2AlOne相比,表现出更高的光催化性能,表明将TiO 2(n型)与Cu2O(p型)进行了改善了电子迁移率并随后降低了速率电子孔重组。确认动力学研究证实,AR8的降解已遵循伪第一阶模型。光催化活性的完美通过使用各种无机氧化剂来实现; H 2 O 2,Na2S2O8和NaiO4SO,以产生电子清除剂。而且,表观速率常数(KAPP)和表观量子产率(QAPP)对于所有氧化剂的较高比没有氧化剂,而在每阶(EEO)和半衰期(T0.5)的电能方面较低。与其他氧化剂相比,期间离子已被认为是最有效的氧化剂,用于通过形成各种反应性氧物种来增强光催化活性。这些催化系统的降解效率可以按升序排列:Cu2O @ TiO 2 / NaiO 4?> -O 2 O @ TiO2 / Na 2 S 2 O 8?> -O 2 O @ TiO 2 / H 2 O 2?> Cu2O?>ΔTiO2。

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