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Doping nitrogen anion enhanced photocatalytic activity on TiO2 hybridized with graphene composite under solar light

机译:掺杂氮阴离子增强太阳光与石墨烯复合杂化TiO2的光催化活性

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Enhanced photocatalytic activity of the graphene-hybridized TiO2 composite by nitrogen anion under the visible light has been reported, where we presented the synthesis of nitrogen-doped graphene/TiO2 (graphene-N/TiO_(2-x)N_x) by a hydrothermal method in a solution containing urea. A hybrid photocatalyst consisting of TiO2, nitrogen anion and graphene sheets with excellent solar light-induced photoactivity was demonstrated as compared with graphene/TiO2 and graphene/TiO_(2-x)N_x composite. The photocatalytic activity of graphene/TiO2 composite in the presence of nitrogen anion was evaluated by degradation of benzoic acid under solar light, which showed a remarkable enhancing effect. This work determined that nitrogen anion not only expands the visible light absorption region of TiO2, but also accelerates the electron transfer in the graphene network as a highway.
机译:已经报道了在可见光下氮阴离子增强了石墨烯杂化的TiO2复合材料的光催化活性,在此我们提出了水热法合成氮掺杂石墨烯/ TiO2(石墨烯-N / TiO_(2-x)N_x)的方法。在含有尿素的溶液中与石墨烯/ TiO2和石墨烯/ TiO_(2-x)N_x复合材料相比,证明了由TiO2,氮阴离子和石墨烯片组成的杂化光催化剂具有优异的太阳光诱导的光活性。通过在太阳光下苯甲酸降解,评价了在氮阴离子存在下石墨烯/ TiO2复合材料的光催化活性,显示出显着的增强作用。这项工作确定了氮阴离子不仅扩展了TiO2的可见光吸收区域,而且还加速了石墨烯网络中作为高速公路的电子转移。

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