首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Fabrication and Characterization of Visible-Light-Driven Plasmonic Photocatalyst Ag/AgCl/ TiO2 Nanotube Arrays
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Fabrication and Characterization of Visible-Light-Driven Plasmonic Photocatalyst Ag/AgCl/ TiO2 Nanotube Arrays

机译:可见光驱动的等离激元光催化剂Ag / AgCl / TiO 2纳米管阵列的制备与表征

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Conventional TiO2 photocatalyst possesses excellent activities and stabilities, but requires near-ultraviolet (UV) irradiation (about 4% of the solar spectrum) for effective photocatalysis, thereby severely limiting its practical application. It is highly desirable to develop a photocatalyst that can use visible light in high efficiency under sunlight irradiation. In this work, we prepare new visible-light-driven plasmonic photocatalyst Ag/ AgCl/TiO2 nanotube arrays (NTs) by depositing AgCl nanoparticles (NPs) into, the self-organized TiO2 NTs, and then reducing partial Ag~+ ions in the surface region of the AgCl particles to Ag° species under xenon lamp irradiation. The prepared metal—semiconductor nanocomposite plasmonic photocatalyst exhibits a highly visible-light photocatalytic activity for photocatalytic degradation of methyl orange in water and stability. A new plasmonic photocatalytic mechanism, which is proposed on the basis of the fact that the Ag NPs are photoexcited due to plasmon resonance and charge separation, is accomplished by the transfer of photoexcited electrons from the Ag NPs to the TiO2 conduction band and the simultaneous transfer of compensative electrons from a donor (Cl~-) to the Ag NPs. The proposed mechanism is further confirmed by the experiments of hydroxyl radical and transient photocurrent response. The prepared photocatalysts are also of great interest in solar cell, catalysis, separation technology, biomedical engineering, and nanotechnology. This study may provide new insight into the design .and preparation of advanced visible-light photocatalytic materials. .
机译:常规的TiO 2光催化剂具有优异的活性和稳定性,但是需要近紫外线(UV)辐射(约占太阳光谱的4%)才能有效地进行光催化,从而严重限制了其实际应用。迫切需要开发一种在阳光照射下可以高效使用可见光的光催化剂。在这项工作中,我们通过将AgCl纳米颗粒(NPs)沉积到自组织的TiO2 NTs中,然后还原其中的部分Ag〜+离子,来制备新型可见光驱动的等离子光催化剂Ag / AgCl / TiO2纳米管阵列(NTs)。氙灯照射下,AgCl颗粒的表面区域与Ag°种类有关。制备的金属-半导体纳米复合等离子体激元光催化剂对甲基橙在水中的光催化降解和稳定性表现出很高的可见光光催化活性。提出了一种新的等离激元光催化机理,该机理是基于光子电子从银纳米颗粒向二氧化钛导带的转移并同时转移,从而实现了银纳米颗粒由于等离子体共振和电荷分离而被光激发的事实。从供体(Cl〜-)到银纳米粒子的补偿电子通过羟基自由基和瞬时光电流响应的实验进一步证实了所提出的机理。制备的光催化剂也对太阳能电池,催化,分离技术,生物医学工程和纳米技术非常感兴趣。这项研究可以为高级可见光光催化材料的设计和制备提供新的见识。 。

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