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Synthesis of visible-light responsive nitrogen/carbon doped titania photocatalyst by mechanochemical doping

机译:力学化学掺杂合成可见光响应氮/碳掺杂二氧化钛光催化剂

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摘要

Nitrogen and/or carbon doped titania photocatalysts TiO2?x A y (A = N, C) were prepared by a novel mechanochemical method. The samples were prepared by a high-energy ball milling of P25 titania with different nitrogen/carbon sources such as hexamethylenetetramine, admantane or ammonium carbonate, followed by calcination in air at 400 °C. The high mechanical energy accelerated the phase transformation of anatase to rutile, while the existence of the chemical reagents tended to block the transformation. The prepared powders possessed two absorption edges around 400 and 540 nm and showed excellent photocatalytic ability for nitrogen monoxide oxidation under visible light irradiation. Under the irradiation of visible light of wavelength >510 nm, 37% of nitrogen monoxide could be continuously removed by the carbon and nitrogen co-doped titania prepared by planetary ball milling of P25 titania–10% hexamethylenetetramine mixture followed by calcination in air at 400 °C. This mechanochemical technique might be widely useful for doping oxides with nonmetallic elements.
机译:采用新颖的机械化学方法制备了氮和/或碳掺杂的二氧化钛光催化剂TiO2?x Ay (A = N,C)。通过高能球磨P25二氧化钛与不同的氮/碳源(例如六亚甲基四胺,金刚烷或碳酸铵),然后在400°C的空气中煅烧来制备样品。高机械能加速了锐钛矿相向金红石相的转变,而化学试剂的存在则倾向于阻止这种转变。制备的粉末在400nm和540nm附近具有两个吸收边缘,并且在可见光照射下显示出优异的光催化氧化能力。在波长大于510 nm的可见光照射下,通过行星式球磨P25二氧化钛-10%六亚甲基四胺混合物,然后在400℃的空气中煅烧制备的碳和氮共掺杂的二氧化钛,可以连续去除37%的一氧化氮。 ℃。这种机械化学技术对于用非金属元素掺杂氧化物可能非常有用。

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  • 来源
    《Journal of Materials Science》 |2007年第7期|2399-2404|共6页
  • 作者单位

    Institute of Multidisciplinary Research for Advanced Materials Tohoku University Sendai 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials Tohoku University Sendai 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials Tohoku University Sendai 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials Tohoku University Sendai 980-8577 Japan;

    Institute of Multidisciplinary Research for Advanced Materials Tohoku University Sendai 980-8577 Japan;

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