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Studying the Photoactivity of Ag-Decorated TiO2 Nanotubes with Combined AFM and Raman Spectroscopy

SURFACES(2024)

Politecn Milan

Cited 0|Views0
Abstract
The drive for the development of systems that can simultaneously investigate chemical and morphological information comes from the requisite to fully understand the structure and chemical reactivity relationships of materials. This is particularly relevant in photocatalysis, a field ruled by surface interactions. An in-depth understanding of these complex interactions could lead to significant improvements in materials design, and consequently, in photocatalytic performances. Here, we present a first approach to a combined atomic force microscopy (AFM) and Raman spectroscopy characterization of anodic TiO2 nanotubes arrays decorated with Ag nanoparticle electrodeposition from either the same anodizing organic electrolyte or from an aqueous one. Photocatalytic substrates were used in up to 15 consecutive photocatalysis tests to prove their possible deterioration with reuse. Sample aging can, in principle, produce changes in both the morphology and the chemical compounds that characterize the photocatalyst surface. Adopting multiple characterization techniques, such as a combination of AFM and Raman spectroscopy in an original setup, can profitably enable the observation of surface contamination. A significant drop in photocatalytic activity was observed after 10 cycles on samples where silver was deposited from the organic electrolyte, while the others remained stable. Such a drop was ascribed to photocatalyst deactivation. While in other cases, a simple recovery treatment allowed the initial photoactivity to be restored, this deactivation was not restored even after chemical and thermal cleaning treatments.
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TiO2 nanotubes,Ag nanoparticles,photocatalysis,rhodamine-B,deactivation,atomic force microscopy (AFM),Raman spectroscopy,chemical maps
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要点】:本文通过结合原子力显微镜(AFM)和拉曼光谱技术,研究了银纳米颗粒装饰的二氧化钛纳米管的光催化活性及其稳定性和退化过程,发现了不同电解质中银纳米颗粒沉积对光催化性能的影响。

方法】:采用AFM和拉曼光谱技术对银纳米颗粒装饰的二氧化钛纳米管进行形貌和化学性质的综合表征。

实验】:通过15次连续的光催化测试,研究了银纳米颗粒从有机电解质和水性电解质中电沉积的二氧化钛纳米管的光催化性能变化,发现银从有机电解质中沉积的样品在10个周期后光催化活性显著下降,而其他样品保持稳定。这种活性下降归因于光催化剂的活化,且即使经过化学和热清洗处理也无法恢复。