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Synthesis Property Characterization and Photocatalytic Activity of the Novel Composite Polymer Polyaniline/Bi2SnTiO7

机译:新型复合高分子聚苯胺/ Bi2SnTiO7的合成性质表征及光催化活性

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摘要

A novel polyaniline/Bi2SnTiO7 composite polymer was synthesized by chemical oxidation in-situ polymerization method and sol-gel method for the first time. The structural properties of novel polyaniline/Bi2SnTiO7 have been characterized by X-ray diffraction, scanning electron microscopy, X-ray photoelectron spectroscopy and X-ray spectrometry. The lattice parameter of Bi2SnTiO7 was found to be a = 10.52582(8) Å. The photocatalytic degradation of methylene blue was realized under visible light irradiation with the novel polyaniline/Bi2SnTiO7 as catalyst. The results showed that novel polyaniline/Bi2SnTiO7 possessed higher catalytic activity compared with Bi2InTaO7 or pure TiO2 or N-doped TiO2 for photocatalytic degradation of methylene blue under visible light irradiation. The photocatalytic degradation of methylene blue with the novel polyaniline/Bi2SnTiO7 or N-doped TiO2 as catalyst followed first-order reaction kinetics, and the first-order rate constant was 0.01504 or 0.00333 min−1. After visible light irradiation for 220 minutes with novel polyaniline/Bi2SnTiO7 as catalyst, complete removal and mineralization of methylene blue was observed. The reduction of the total organic carbon, the formation of inorganic products, SO42− and NO3−, and the evolution of CO2 revealed the continuous mineralization of methylene blue during the photocatalytic process. The possible photocatalytic degradation pathway of methylene blue was obtained under visible light irradiation.
机译:首次通过化学氧化原位聚合法和溶胶-凝胶法合成了一种新型的聚苯胺/ Bi2SnTiO7复合聚合物。通过X射线衍射,扫描电子显微镜,X射线光电子能谱和X射线能谱表征了新型聚苯胺/ Bi2SnTiO7的结构性能。发现Bi2SnTiO7的晶格参数为a = 10.52582(8)。以新型聚苯胺/ Bi2SnTiO7为催化剂,在可见光照射下实现了亚甲基蓝的光催化降解。结果表明,与Bi2InTaO7或纯TiO2或N掺杂TiO2相比,新型聚苯胺/ Bi2SnTiO7在可见光照射下具有较高的催化活性。新型聚苯胺/ Bi2SnTiO7或N掺杂TiO 2 作为催化剂对亚甲蓝的光催化降解遵循一级反应动力学,一级速率常数为0.01504或0.00333 min - 1 。新型聚苯胺/ Bi 2 SnTiO 7 为催化剂可见光照射220分钟后,观察到亚甲基蓝被完全去除和矿化。总有机碳的减少,无机产物,SO 4 2-和NO 3-的形成以及CO < sub> 2 揭示了在光催化过程中亚甲基蓝的连续矿化。在可见光照射下获得了亚甲基蓝可能的光催化降解途径。

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