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Synthesis and Characterisation of Photocatalyst Silver/Silver Halide Nanocomposites

机译:光催化剂银/卤化银纳米复合材料的合成与表征

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摘要

The photochemical activity of silver halides forms the basis of photography and latent image formation. More recently it has been used to create hybrid silver/silver halide nanoparticles. These are formed through partial reduction of Ag⁺ to Ag⁰ by a photochemical self-sensitisation when irradiated with light. This gives the silver/silver halide nanoparticles interesting photocatalytic properties. As such, these silver/silver halide nanoparticles have seen to be part of group of photocatalysts known as plasmonic photocatalysts. Where, the photocatalytic mechanism is enhanced by the surface plasmon resonance of noble metal nanodomains on the surface of the silver halide nanoparticle.The silver/silver halide nanoparticles of Cl⁻, Br⁻ and I⁻ were synthesised and characterised. Silver/silver halide nanoparticles were then incorporated into porous support materials creating silver/silver halide nanocomposite materials. This was through a straight forward aqueous synthesis method, where silver halide nanoparticles precipitated from solution, and nanoparticle size, shape and stabilisation was controlled by the porous support material. Silver/silver halide nanocomposite samples using Cl⁻, Br⁻ and I⁻ were synthesised using wool fibres, kraft paper fibres and nanostructured calcium silicate as supports.UV/Vis and XRD showed Ag⁰ nanodomains were formed during the self-sensitisation process. SEM showed the morphology of the nanocomposites and that the nanoparticles were distributed within the nanocomposite matrix, not deposited on the surface. Preliminary photocatalytic activity of Ag/AgCl nanoparticles and nanocomposites was evaluated through the degradation of methylene blue when irradiated with light. All samples showed increased photocatalytic activity with the Ag/AgCl nanoparticles.
机译:卤化银的光化学活性形成照相和潜像形成的基础。最近,它已被用于制备杂化银/卤化银纳米颗粒。这些是通过在光照射下通过光化学自敏将Ag 3部分还原为Ag 3而形成的。这使银/卤化银纳米颗粒具有有趣的光催化性能。这样,这些银/卤化银纳米颗粒被视为属于等离子光催化剂的光催化剂的一部分。其中,卤化银纳米粒子表面的贵金属纳米域的表面等离子体共振增强了光催化机理。合成并表征了Cl⁻,Br⁻和I⁻的银/卤化银纳米粒子。然后将银/卤化银纳米颗粒掺入多孔载体材料中,从而形成银/卤化银纳米复合材料。这是通过直接的水合成方法,其中卤化银纳米颗粒从溶液中沉淀出来,并且纳米颗粒的大小,形状和稳定性由多孔载体材料控制。以羊毛,牛皮纸纤维和纳米结构的硅酸钙为载体合成了Cl,Br,I⁻的银/卤化银纳米复合材料样品。UV/ Vis和XRD表明在自敏过程中形成了Ag⁰纳米域。 SEM显示纳米复合材料的形态,并且纳米颗粒分布在纳米复合材料基质内,而不沉积在表面上。 Ag / AgCl纳米颗粒和纳米复合材料的初步光催化活性通过光照射时亚甲基蓝的降解来评估。所有样品均显示出具有Ag / AgCl纳米颗粒的增加的光催化活性。

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    Tate Eldon Warwick;

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  • 年度 2012
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