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Nanoparticle Formation in Surface Layer of Oxide Materials and Improvement of Photocatalytic Properties of Rutile Titanium Dioxide

机译:氧化物材料表面层的纳米粒子形成及金红石钛二氧化钛的光催化性能

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Negative-ion implantation could be used to create nanoparticles in oxide insulators with finely controlled accuracy for both depth and size. For 50-nm-thick SiO_2 film on Si, Ag nanoparticles with 3 nm in diameter were created in the center of the film with distribution thickness of 17 nm. Cu negative-ion implanted silica glass and soda-lime glass showed a high nonlinear susceptance of the 3rd order in nonlinear optical property. Cu and Ag double-implanted silica glass showed an absorption peak between two absorption peaks of surface plasmon resonance (SPR) for Cu and Ag nanoparticles. The optical absorption peak due to SPR of nanoparticle in oxide could be changed by forming nanoparticles with different kinds of elements and alloy. For application of metal nanoparticle to photocatalyst, Ag negative ions were implanted into rutile TiO_2. The Ag-implanted rutile samples showed improved photocatalytic efficiency after proper annealing in a decolorization test of methylene blue solution under fluorescent light. The better one was the Ag-implanted rutile TiO_2 (Ag: 65 keV, 5 * 10~(16) ions/cm~2, 500 °C annealed), which showed a photocatalytic efficiency higher by 2.2 times than that of unimplanted rutile TiO_2. In the evaluation under fluorescent light through UV-cut filter for 19 h, the Ag-implanted rutile showed 6.7 times higher efficiency.
机译:负离子植入可用于在氧化物绝缘体中产生纳米颗粒,用于深度和尺寸。对于Si上的50-Nm厚的SiO_2薄膜,在薄膜的中心形成具有3nm的Ag纳米颗粒,分布厚度为17nm。 Cu负离子植入二氧化硅玻璃和钠钙玻璃在非线性光学性质中显示出第三顺序的高度非线性易感性。 Cu和Ag双植入二氧化硅玻璃在Cu和Ag纳米粒子的两种吸收峰之间显示了两个吸收峰之间的吸收峰。通过用不同种类的元素和合金形成纳米颗粒,可以改变由于纳米颗粒的SPR引起的光学吸收峰。为了将金属纳米颗粒在光催化剂中施加,将Ag负离子注入金红石TiO_2。在荧光灯下亚甲基蓝溶液的脱色试验中,Ag植入的金红石样品显示出在适当的退火后显着的光催化效率。较好的是Ag植入的金红石TiO_2(Ag:65 kev,5 * 10〜(16)离子/ cm〜2,500°C退火),其显示光催化效率比未普化的金红石TiO_2更高2.2倍。在通过UV-CUT滤光片的荧光光照下的评估中,Ag植入的金红石效率较高的6.7倍。

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