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Modified graphitic carbon nitride prepared via a copolymerization route for superior photocatalytic activity

机译:通过共聚途径制备的改性石墨碳氮化物,用于优异的光催化活性

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摘要

Molecular doping strategy has been applied for regulating the electronic band structure of graphitic carbon nitride (g-C3N4). By incorporating the electron-withdrawing impurity group of N,N',NaEuro(3)-s-triazine-2,4,6-triyl-tri-p-aminobenzoic acid (H(3)TATAB) into the network of g-C3N4, a series of H(3)TATAB-doped g-C3N4 (TABCN) photocatalysts were synthesized via thermal copolymerization at 550 A degrees C for 4 h. H(3)TATAB doping shifts the VB of TABCN from 1.78 eV (pristine g-C3N4) to a low position (2.07 eV for TCBCN0.8), which enhances the oxidation ability of the VB hole for producing hydroxyl radicals in aqueous solution, and, therefore, the UV photocatalytic activity of TABCN0.8 is estimated to be about twice as high as that of g-C3N4 for the degradation of AO7. Further, doping the H(3)TATAB impurity group into the g-C3N4 network induces plenty of defect levels below the CB of g-C3N4, which gives a significant absorbance enhancement in the visible region. As a result, the visible light photocatalytic activity of TABCN0.8 is 7.5 times higher than that of g-C3N4 for the degradation of AO7. This work may provide guidance on designing an efficient g-C3N4 polymer photocatalyst with desirable electronic structure.
机译:用于调节石墨氮化物(G-C3N4)的电子带结构的分子掺杂策略。通过将N,N',NaEURO(3)-S-三嗪-2,4,6-三酯 - 三氨基 - 氨基苯甲酸(H(3)Tatab)的吸电子杂质基团掺入G-的网络中C3N4,一系列H(3)掺杂的G-C3N4(TabcN)光催化剂通过550℃的热共聚合合成4小时。 H(3)Tatab掺杂将Tabcn的VB从1.78eV(原始G-C3N4)移至低位置(用于TCBCN0.8的2.07eV),这提高了VB孔在水溶液中产生羟基的氧化能力,因此,据估计TabCN0.8的UV光催化活性为AO7降解的G-C3N4大约是G-C3N4的两倍。此外,将H(3)Tatab杂质组掺杂到G-C3N4网络中,诱导G-C3N4的CB低于G-C3N4的缺陷水平,这在可见区域中产生显着的吸光度增强。结果,对于AO7的降解,TabCN0.8的可见光光催化活性比G-C3N4高7.5倍。这项工作可以在设计具有所需电子结构的高效G-C3N4聚合物光催化剂方面提供指导。

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