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The Use of Tunable Optical Absorption Plasmonic Au and Ag Decorated TiO 2 Structures as Efficient Visible Light Photocatalysts

机译:使用可调光学吸收等离子体AU和AG装饰TiO 2结构,如高效的可见光光催化剂

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Exploring solar-excited heterogeneous photocatalysts by taking advantage of surface plasmon resonance (SPR) has drawn growing research attention. As it could help to pave the way for global sustainable development. The decoration of TiO 2 particles with noble metals possessing SPR effects is regarded as one of the most effective solutions. The perfect match of the SPR absorption band with the spectrum of incident light is an essential factor for plasmonic enhancement. However, modifying with sole noble metal is often limited as it tunes wavelength of only several nanometers. To overcome this drawback, an alternative approach can be offered by decoration with more than one noble metal. For instance, Au-Ag co-decoration displays greatly adjustable, composition-dependent SPR agent over a broad range of the visible light spectrum (ca. from 415 to 525 nm). Hence Au-Ag complex is a remarkable candidate for tuning the photo adsorption of TiO 2 from UV to visible light. This study presents a novel and tailored method for the fabrication of Au-Ag co-modified TiO 2 particles, and how Au-Ag dependent SPR was applied as the visible light-responsive TiO 2 based photocatalysts in a simple but reliable way. The fabricated Au-Ag co-decorated TiO 2 (Au x Ag (1? x ) /TiO 2 ) was characterized and proved to own excellent stability and large specific surface area. The optimization of these particles against the wavelength of maximal solar light intensity was confirmed by photo degradation of methylene blue under visible light radiation. This work may provide further insight into the design of TiO 2 -based composites with improved photocatalytic properties for environmental remediation and renewable energy utilization.
机译:通过利用表面等离子体共振(SPR)探索太阳能兴奋的异质光催化剂,绘制了日益增长的研究。因为它可以帮助为全球可持续发展铺平道路。 TiO 2具有具有SPR效应的贵金属的TiO 2颗粒的装饰被认为是最有效的解决方案之一。 SPR吸收带与入射光光谱的完美匹配是等离子体增强的必要因素。然而,用鞋底贵金属的改变通常限制,因为它的调谐只有几纳米的波长。为了克服这一点,可以通过多于一个贵金属的装饰提供一种替代方法。例如,Au-Ag的合作装饰在广泛的可见光光谱(约415至525nm)上显示出大大可调节的组成依赖的SPR试剂。因此,AU-AG复合物是一种显着的候选者,用于将TiO 2从UV调整到可见光的照片吸附。该研究提出了一种用于制备Au-Ag共改性TiO 2颗粒的新颖和定制方法,以及如何以简单但可靠的方式作为可见光响应TiO 2的可见光响应TiO 2的光催化剂将Au-Ag依赖性SPR施用。制造的AU-AG共装TiO 2(Au x Ag(1×x)/ TiO 2)的特征在于,并证明了拥有优异的稳定性和大的比表面积。通过在可见光辐射下通过光降解确认通过光亮的光降解来确认这些颗粒的优化抵抗最大太阳能光强度的波长。该工作可以进一步了解TiO 2基层的设计,具有改善的光催化性能,用于环境修复和可再生能量利用。

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