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Synthesis of barbituric acid doped carbon nitride for efficient solar-driven photocatalytic degradation of aniline

机译:掺杂巴比妥酸的氮化碳的合成,可有效地驱动太阳光催化降解苯胺

摘要

A series of barbituric acid doped carbon nitride (CN-BA) photocatalysts were successfully prepared by copolymerizing dicyandiamide with barbituric acid (BA). Under AM1.5 simulated sunlight, CN-BA photocatalysts exhibit enhanced photocatalytic activity compared to pure carbon nitride for the degradation of aniline. The highest activity is obtained with 2% doped CN-BA photocatalyst. Results on the photodegradation of aniline indicate that for the optimized CN-BA photocatalyst, the concentration of aniline solution was reduced gradually from 16 mg/L to 1.354 mg/L in 2 h. This corresponds to a 6 times higher photodegradation efficiency than pure carbon nitride samples. The enhanced photocatalytic activity of CN-BA relies on the enhanced surface area, the higher light absorption and the reduced recombination of the photo-generated electron-hole pairs. This interpretation results from multiple characterizations with EPR, BET, N2adsorption, Solid-state13C NMR, UV–vis DRS, FESEM, and TEM. Under simulated sunlight irradiation, CN-BA is excited and generates electron-hole pairs. The photo-generated electrons in the CN-BA conduction band react with the molecular oxygen to form [rad]O2−. Part of the [rad]O2−transforms into [rad]OH, which further oxides aniline. Meanwhile, photo-generated holes in the valence band of CN-BA can benefit to the formation of [rad]OH or directly oxide aniline.
机译:通过双氰胺与巴比妥酸(BA)的共聚反应,成功制备了一系列巴比妥酸掺杂的氮化碳(CN-BA)光催化剂。在AM1.5模拟阳光下,与纯氮化碳相比,CN-BA光催化剂对苯胺的降解具有增强的光催化活性。掺杂2%的CN-BA光催化剂可获得最高的活性。苯胺的光降解结果表明,对于优化的CN-BA光催化剂,苯胺溶液的浓度在2小时内从16 mg / L逐渐降低到1.354 mg / L。这相当于光降解效率是纯氮化碳样品的6倍。 CN-BA的增强的光催化活性取决于表面积的增加,光生电子-空穴对的更高的光吸收和减少的重组。这种解释来自EPR,BET,N2吸附,固态13C NMR,UV-vis DRS,FESEM和TEM的多种表征。在模拟的阳光照射下,CN-BA被激发并生成电子-空穴对。 CN-BA导带中的光生电子与分子氧反应形成[rad] O2-。 [rad] O2-的一部分转化为[rad] OH,进一步氧化苯胺。同时,CN-BA价带中的光生空穴可有助于[rad] OH或直接氧化苯胺的形成。

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