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基于多酸化合物的 PMo/AgNPs 复合材料的制备及其光催化应用。

Preparation and Photocatalytic Application of the Composites PMo/AgNPs Based on Polyoxometalates.

机构信息

School of Chemical Engineering, Northeast Electric Power University, Jilin 132000, P. R. China.

College of Petrochemical Technology, Jilin Institute of Chemical Technology, Jilin 132012, China.

出版信息

J Nanosci Nanotechnol. 2021 Dec 1;21(12):6135-6142. doi: 10.1166/jnn.2021.19534.

Abstract

Supported catalysts, consisting of PMo immobilized on silver nanomaterials at different recombination time and the silver nanomaterials with different template sodium citrate amount characterized by FT-IR, XRD, SEM, UV-vis and other test methods. The results show that the AgNPs are relatively uniformed with sizes between 100-300 nm when the sodium citrate addition amount is 9.0 mL. As the reaction time of PMo/AgNPs increases, the adhesion of AgNPs on the surface of PMo becomes more complete. Using PMo and PMo/AgNPs composite materials as catalysts, methylene blue (MB) is photocatalytically degraded under simulated visible light conditions. The results show that PMo can catalyze MB effectively, and the decolorization rate reached 98.6% when the catalyst content is 2 g/L, the solution pH is 3 and the MB concentration is 5 mg/L. Under the same experimental conditions, photocatalytic performance of the PMo/AgNPs system is better than that of the PMo further improved the photocatalytic degradation effect of the MB solution with a decolorization rate of 100%. The composite still keeps good photocatalytic activity and stability after three cycles of use. Finally, the catalytic mechanism of the POMs composite material is preliminarily discussed.

摘要

负载型催化剂,由不同复合时间的磷钼酸固定在银纳米材料上和不同模板柠檬酸钠用量的银纳米材料组成,通过 FT-IR、XRD、SEM、UV-vis 等测试方法进行了表征。结果表明,当柠檬酸钠添加量为 9.0 mL 时,AgNPs 的尺寸在 100-300nm 之间相对均匀。随着 PMo/AgNPs 反应时间的增加,AgNPs 在 PMo 表面的附着力变得更加完整。以 PMo 和 PMo/AgNPs 复合材料作为催化剂,在模拟可见光条件下光催化降解亚甲基蓝(MB)。结果表明,PMo 能有效催化 MB,当催化剂含量为 2 g/L、溶液 pH 值为 3、MB 浓度为 5mg/L 时,脱色率达到 98.6%。在相同的实验条件下,PMo/AgNPs 体系的光催化性能优于 PMo,进一步提高了 MB 溶液的光催化降解效果,脱色率达到 100%。该复合材料在经过三次循环使用后仍保持良好的光催化活性和稳定性。最后,初步探讨了 POMs 复合材料的催化机理。

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