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Effect of Co-Doping of Nano Silver, Carbon and Nitrogen on Titania on the Visible Light Activity for Methylorange Degradation

机译:纳米银,碳和氮的共掺杂对二氧化钛对甲基橙降解可见光活性的影响

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摘要

Co-doping of nanosilver, carbon and nitrogen is done on titania to get improved photodegradation of pollutants when compared to single doping. Anion doping extends the absorption of TiO_2 to the visible region; whereas noble metal NP doping prevents the recombination of photoinduced electrons and holes. Doped TiO_2 prepared using sol gel method allows efficient dispersion of nano silver and thus enhances the photodegradability. X-ray Diffraction analysis shows the efficient dispersion of incorporated nano silver over anatase TiO_2. The visible light absorption is confirmed from UV-Vis Diffuse Reflectance spectral studies. Photocatalytic activity is investigated by the degradation of methyl orange as a model pollutant. Efficient degradation in visible light shows the synergetic effect of carbon and nitrogen doping as well as nano silver loading on the performance of TiO_2.
机译:与单掺杂相比,纳米银,碳和氮的共掺杂是在二氧化钛上完成的,以提高污染物的光降解。阴离子掺杂将TiO_2的吸收扩展到可见光区域。贵金属NP掺杂可防止光致电子和空穴的复合。使用溶胶凝胶法制备的掺杂TiO_2可以有效分散纳米银,从而提高光降解性。 X射线衍射分析表明掺入的纳米银在锐钛矿TiO_2上的有效分散。可见光吸收是通过UV-Vis漫反射光谱研究确定的。通过降解作为模型污染物的甲基橙来研究光催化活性。可见光的有效降解显示出碳和氮掺杂以及纳米银负载量对TiO_2性能的协同作用。

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