首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Preparation of nitrogen-doped titania with high visible light induced photocatalytic activity by mechanochemical reaction of titania and hexamethylenetetramine
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Preparation of nitrogen-doped titania with high visible light induced photocatalytic activity by mechanochemical reaction of titania and hexamethylenetetramine

机译:二氧化钛与六亚甲基四胺的机械化学反应制备具有高可见光诱导的光催化活性的氮掺杂二氧化钛

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摘要

Nitrogen-doped yellowish rutile titania was prepared by a mechanochemical method.The samples were prepared by high-energy ball milling of a P-25 titania powder with various amounts of hexamethylenetetramine (HMT) under different milling conditions at around room temperature.The effects of the reaction conditions on the phase composition,particle size,specific surface area,amount of nitrogen-doping,microstructure and photocatalysis of nitrogen monoxide destruction were investigated in detail.The high mechanical energy accelerated the transformation of the phase from anatase to rutile,while the presence of HMT decreased the phase transformation.Residual HMT and by-products could be removed by post-milling calcination in air at 400 deg C.The nitrogen-doped yellowish titania possessed two absorption edges at around 400 and 550 nm and showed excellent photocataluytic ability for nitrogen monoxide oxidation edges at around 400 and 550 nm and showed excellent photocatalytic ability for nitrogen monoxide oxidation under visble light irradiation.Irradiation with visible light of wavelength >510 nm allowed nearly 37% nitrogen monoxide to be continuously removed by the nitrogen-doped titania prepared by planetary ball milling of a P-25 titania-10 wt% HMT mixture at 700 rpm for 120 min followed by calcination in air at 400 deg C.
机译:采用机械化学方法制备氮掺杂的微金红石型金红石型二氧化钛,并在室温下不同的研磨条件下,通过将高能球磨P-25二氧化钛粉末与不同量的六亚甲基四胺(HMT)制备样品。详细研究了反应条件对相组成,粒度,比表面积,氮掺杂量,微结构和一氧化氮破坏的光催化作用。高机械能加速了相从锐钛矿向金红石的转变,而HMT的存在降低了相变.400°C的空气中通过球磨后煅烧可以去除残留的HMT和副产物。氮掺杂的淡黄色二氧化钛在400和550 nm处具有两个吸收边,并表现出出色的光催化能力一氧化氮在400和550 nm左右的氧化边缘具有很好的光催化能力在可见光照射下进行一氧化碳氧化。用波长大于510 nm的可见光进行辐照,可通过行星式球磨P-25二氧化钛10 wt%HMT混合物制备的掺氮二氧化钛连续去除近37%的一氧化氮。以700 rpm的转速进行120分钟,然后在400℃的空气中煅烧。

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