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Superior Co-catalysis by Bimetallic Nanostructure for TiO2 Photocatalysis

机译:上级Co-catalysis双金属奈米结构对二氧化钛光催化作用

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摘要

Background: Bimetallic nanocomposites have currently gained significant importance for enhanced catalytic applications relative to monometallic analogues. The synergistic interactions modified electronic and optical properties in the bimetallic (M1@M2) structural morphology e.g., core-shell /alloy nanostructures resulting in a better co-catalytic performance for TiO2 photocatalysis. Objective: Hence, this article discusses the preparation, characterization, and co-catalytic activity of different bimetallic nanostructures namely, Cu@Zn, Pd@Au, Au@Ag, and Ag@Cu, etc. Methods: These bimetallic co-catalysts deposited on TiO2 possess the ability to absorb visible light due to surface plasmonic absorption and are also expected to display the new properties due to synergy between two distinct metals. As a result, they reveal the highest level of activity than the mono-metal deposited TiO2. Results: Their optical absorption, emission, charge carrier dynamics, and surface structural morphology are explained for the improved photocatalytic activity of M1@M2 loaded TiO2 for the hydrogena-tion of certain organic compounds e.g., quinoline, crotonaldehyde, and 1,3-dinitrobenzene, etc. under UV/ visible light irradiation. Conclusion: It was revealed that the use of bimetallic core@shell co-catalyst for hydrogenation of important industrial organics by M1@M2-TiO2 nanocomposite demonstrates beneficial reactivity in many instances relative to conventional transition metal catalysts.
机译:背景:双金属纳米复合材料目前获得显著的重要性相对于增强催化应用单本位制的类似物。修改后的电子和光学的交互双金属的属性(M1@M2)结构形态如核壳/合金纳米结构导致更好的co-catalytic性能二氧化钛光催化作用。文章论述了准备,描述和co-catalytic活动即不同的双金属纳米结构,Cu@Zn、Pd@Au Au@Ag Ag@Cu,等等。这些双金属co-catalysts沉积二氧化钛有能力吸收可见光表面电浆吸收和也将显示新属性两种不同的金属之间的协作。他们揭示了最高水平的活动mono-metal沉积二氧化钛。光学吸收、发射、电荷载体动力学和表面结构形态提高光催化的解释M1@M2负载二氧化钛的活动hydrogena-tion某些有机化合物如喹啉、巴豆醛1、3-dinitrobenzene等在紫外/可见光辐照。使用双金属core@shell co-catalyst加氢工业有机物的重要M1@M2-TiO2纳米复合材料显示有益相对于反应在许多实例传统的过渡金属催化剂。

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