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In situ synthesis of noble metal nanoparticles in ultrathin TiO2-gel films by a combination of ion-exchange and reduction processes

机译:离子交换与还原工艺相结合原位合成TiO2薄膜中的贵金属纳米粒子

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We have explored in situ synthesis of noble metal nanoparticles in ultrathin TiO2-gel films, in view of the increasing importance of such nanoparticle-containing thin films. The two-step procedure consists of ion exchange in the ultrathin matrix and subsequent reduction of metal ions to nanoparticles by low-temperature H-2 plasma, by aqueous NaBH4, and by UV irradiation. Smooth and transparent ultrathin TiO2 films containing noble metal (Ag, Au, Pd, Pt) particles of 2-10 nm were readily obtained by this approach. The size and distribution of metal nanoparticles could be controlled by changing reaction conditions. The film thickness was precisely controlled by the cycle of film assembly. The low-temperature H-2 plasma treatment, first used for-preparation of noble metal nanoparticles, showed interesting advantages over chemical and photoinduced reductions in fabrication of nanoparticle-containing inorganic thin films. [References: 30]
机译:鉴于这种含纳米颗粒的薄膜的重要性日益增加,我们已经探索了在超薄TiO2-凝胶膜中原位合成纳米金属的方法。此两步过程包括在超薄基质中进行离子交换,然后通过低温H-2等离子体,NaBH4水溶液和UV辐射将金属离子还原为纳米颗粒。通过这种方法很容易获得包含2-10 nm贵金属(Ag,Au,Pd,Pt)颗粒的光滑透明的超薄TiO2薄膜。金属纳米粒子的大小和分布可以通过改变反应条件来控制。通过膜组装的周期精确地控制膜厚度。首次用于制备贵金属纳米粒子的低温H-2等离子体处理相对于化学和光诱导减少含纳米粒子的无机薄膜的制备显示出有趣的优势。 [参考:30]

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