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Construction of a ternary g-C3N4/TiO2@polyaniline nanocomposite for the enhanced photocatalytic activity under solar light

机译:三元g-C3N4 / TiO2 @聚苯胺纳米复合材料的构建以增强太阳光下的光催化活性

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摘要

The combination of two or more semiconductor materials for the synthesis of new hybrid photocatalyst could be a good approach to enhance the visible light absorption, electron-hole (e/h+) pair separation rate and photocatalytic decomposition of the organic contaminants. Herein, a facile in situ oxidative polymerization method has been used for the synthesis of visible light active g-C3N4/TiO2@polyaniline (g-C3N4/TiO2@PANI) nanocomposite for the decomposition of the congo red (CR) under the solar light irradiation. Prior to making the composite of TiO2 (P25) with g-C3N4 and polyaniline, a lamellar structure was generated onto the TiO2 brim by alkali hydrothermal treatment to enhance the surface area and adsorption properties. The PL and UV-visible analysis clearly showed the fast separation of the e/h+ pair, and reduction in the bandgap energy of the g-C3N4/TiO2@PANI nanocomposite. The results revealed TiO2, PANI and g-C3N4 showed the synergestic behavior in the g-C3N4/TiO2@PANI nanocomposite and greatly enhanced the photocatalytic degradation of the CR. The photocatalytic decomposition of the CR was almost 100% for 20 mg/L at pH 5, 7 and 180 min. The reusability study of the spent catalyst showed the 90% degradation of CR after four consecutive cycles indicate that g-C3N4/TiO2@PANI nanocomposite is a stable and efficient catalyst. The high efficiency and reusability of the g-C3N4/TiO2@PANI nanocomposite could be attributed to the higher visible light absorption and sensitizing effect of the g-C3N4 and PANI.
机译:两种或多种半导体材料的组合用于合成新型杂化光催化剂可能是增强可见光吸收,电子空穴(e - / h + 对分离速率和光催化分解有机污染物。本文中,一种简便的原位氧化聚合方法已用于合成可见光活性的g-C3N4 / TiO2 @聚苯胺(g-C3N4 / TiO2 @ PANI)纳米复合材料,用于在太阳光下分解刚果红(CR)。辐射。在制备TiO2(P25)与g-C3N4和聚苯胺的复合材料之前,通过碱水热处理在TiO2帽沿上生成层状结构,以提高表面积和吸附性能。 PL和紫外可见分析清楚地显示了e - / h + 对的快速分离,以及g-C3N4 / TiO2 @ PANI的带隙能的减小纳米复合材料。结果表明,TiO2,PANI和g-C3N4在gC 3 N 4 / TiO 2 @PANI纳米复合材料中表现出协同作用,并大大增强CR的光催化降解。在pH 5、7和180 min的条件下,20 mg / L的CR的光催化分解几乎达到100%。废催化剂的可重复使用性研究表明,连续四个循环后CR降解90%,这表明gC 3 N 4 / TiO 2 @PANI纳米复合材料是一种稳定而有效的催化剂。 gC 3 N 4 / TiO 2 @PANI纳米复合材料的高效率和可重用性归因于较高的可见光吸收和敏化作用gC 3 N 4 和PANI的关系。

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