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Template free synthesis of graphitic carbon nitride/titania mesoflowers

机译:石墨氮化碳/二氧化钛中花的无模板合成

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An efficient solar active catalyst is in immense demand for water splitting, waste water treatment and environmental remediation applications due to the growing energy crisis. The key to improving the activity of these materials is to increase the surface area, use a dopant and reduce the charge carrier recombination. This growing concern can be addressed by graphitic carbon nitride (g-C3N4) which has excellent visible light activity. In the present work a mesoporous flower like arrangement of carbon nitride-titania nanocomposites obtained through a solvothermal method without the use of any templates at ambient temperature is reported. A detailed investigation on the formation of these mesoflowers has been studied. The properties of the nanocomposite such as efficient absorption in the visible regime and delayed recombination of charge carriers make it an apt material for solar light photocatalysis for the degradation of organic contaminants. The high surface area of 147 m(2) g(-1) of the mesoflowers has been utilized for heavy metal removal such as Cr(VI) with a sorption percentage of 81% within 2 minutes of contact time in simulated water samples. This report paves the way for a new class of mesoflower nanocomposites for various environmental applications.
机译:由于日益增长的能源危机,高效的太阳能活性催化剂对水分解,废水处理和环境修复应用的巨大需求。改善这些材料的活性的关键是增加表面积,使用掺杂剂并减少电荷载流子复合。日益增长的关注可以通过具有出色可见光活性的石墨氮化碳(g-C3N4)来解决。在本工作中,报道了在室温下通过溶剂热法获得的,不使用任何模板的氮化碳-二氧化钛纳米复合材料的介孔花状排列。已经对这些中花的形成进行了详细的研究。纳米复合材料的性质,例如在可见光区的有效吸收和电荷载流子的重新结合,使其成为用于太阳能光催化降解有机污染物的合适材料。高表面积的147 m(2)g(-1)的中观花已用于在模拟水样中接触时间2分钟内去除重金属(如Cr(VI))的吸附百分比为81%。该报告为用于各种环境应用的新型中花纳米复合材料铺平了道路。

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