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TiO2 sol-gel thin films containing Au and Pt nanoparticles with controlled morphology : optical study and gas sensing properties

机译:包含可控形态的Au和Pt纳米粒子的TiO2溶胶-凝胶薄膜:光学研究和气体传感特性

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摘要

Au and Pt nanoparticles are prepared with colloidal techniques in order to achieve high morphological quality, capped with a polymer and then embedded inside a TiO2 sol-gel matrix, resulting in a homogeneous dispersion of both metal colloids, confirmed by TEM analyses. Refractive index values measured with ellipsometry increase with the annealing temperature, with quite a linear trend, and at the same time the Au surface plasmon resonance peak undergoes a red shift: the refractive index evaluated from the Au plasmon band is slightly lower than the measured value, indicating that the refractive index just around metal particles is different from the average of the matrix, likely because of the polymeric capping agent. Optical gas sensing tests towards CO and H2 are presented as one of the possible applications of these nanocomposites.
机译:为了获得高形态质量,用胶体技术制备了Au和Pt纳米颗粒,先用聚合物封盖,然后将其包埋在TiO2溶胶-凝胶基质中,从而使两种金属胶体均匀分散,这通过TEM分析得到了证实。椭圆偏光法测得的折射率值随退火温度的增加而呈线性趋势,同时Au表面等离子体激元共振峰发生红移:从Au等离子体激元谱带测得的折射率略低于测量值,表明金属颗粒周围的折射率与基质的平均值不同,这可能是由于聚合物封端剂造成的。提出了针对CO和H2的光学气体传感测试,作为这些纳米复合材料的可能应用之一。

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