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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Design and application of Au decorated ZnO/TiO2 as a stable photocatalyst for wide spectral coverage
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Design and application of Au decorated ZnO/TiO2 as a stable photocatalyst for wide spectral coverage

机译:金修饰的ZnO / TiO2作为稳定的光催化剂,适用于宽光谱范围的设计和应用

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A ternary nanostructured photocatalyst consisting of ZnO/TiO2/Au was designed to achieve an enhanced solar absorption due to the coupling of surface enhanced plasmonic absorption of metal and semiconductor excitons. TiO2 coated ZnO rods with an aspect ratio of 8-12 were decorated with citrate capped gold nanoparticles for photocatalytic degradation of organic pollutants in simulated waste water under solar irradiation. Simulated waste water was prepared so as to get a mixture exhibiting a wide range of spectral distribution in the UV-visible region by deliberately mixing congo red, methylene blue and malachite green. Photo-oxidation of few phenolic compounds such as phenol, 4-chlorophenol and polycyclic aromatic hydrocarbons viz. anthracene and phenanthrene were also investigated in order to rule out the visible light sensitization of the dye molecules and confirm the photocatalytic efficacy of the ternary composite for a wide range of water pollutants under simulated solar irradiation. The composite exhibited enhanced photocatalytic activity and photoelectrochemical stability upon UV and visible light exposure. This enhanced efficiency was also corroborated with the photocarrier lifetime and chronoamperometric studies. Under simulated solar irradiation, UV light induced well separated charge carriers coupled with the visible light induced local surface plasmon resonance of AuNPs to exert significantly enhanced photocatalytic activity in a broad spectral region. This type of material may evolve as a novel photocatalyst for the efficient removal of organic contaminants in waste water and photoelectrochemical water splitting under the solar spectrum.
机译:设计了一种由ZnO / TiO2 / Au组成的三元纳米结构光催化剂,由于金属和半导体激子的表面增强的等离激元吸收耦合,从而实现了增强的太阳吸收。用柠檬酸盐覆盖的金纳米粒子装饰长宽比为8-12的TiO2涂层的ZnO棒,以在太阳辐射下光催化降解模拟废水中的有机污染物。通过有意地混合刚果红,亚甲基蓝和孔雀石绿,制备了模拟废水,以使混合物在紫外可见区域具有宽光谱分布。少数酚类化合物(例如苯酚,4-氯苯酚和多环芳烃)的光氧化作用。还研究了蒽和菲,以排除染料分子的可见光敏化并确认三元复合物在模拟太阳辐射下对多种水污染物的光催化功效。该复合物在紫外线和可见光照射下表现出增强的光催化活性和光电化学稳定性。光电载流子寿命和计时电流法研究也证实了这种提高的效率。在模拟的太阳辐射下,紫外光诱导的分离良好的载流子与可见光诱导的AuNPs的局部表面等离振子共振在宽光谱区域内发挥了显着增强的光催化活性。这种类型的材料可能会演变成一种新型的光催化剂,用于有效去除废水中的有机污染物和在太阳光谱下分解的光电化学水。

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