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Construction of p–n junction type Ag2O/SnO2 heterostructure photocatalyst for enhanced organic dye degradation under direct sunlight irradiation: Experimental and theoretical investigations

机译:p-n结型Ag2O/SnO2异质结构光催化剂的构建及其在阳光直射下增强有机染料降解的实验和理论研究

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摘要

Abstract The p–n junction type like Ag2O/SnO2 nanorods (NRs) photocatalysts have been synthesized by adding different concentrations of Silver (Ag) during SnO2 NRs synthesis. The SnO2 NRs with tetragonal and Ag2O nanoparticle (NPs) with cubic crystal structures are confirmed from SEM and XRD analyses. The Ag satellite peaks, 3d3/2 and 3d5/2, confirm the formation of Ag2O in the sample. The length of SnO2 NRs (approximately 4 to 5 μm) is gradually decreased by increasing Ag2O addition. When compared with pure SnO2 NRs, Ag2O/SnO2 photocatalysts show enhanced photodegradation activity in short time is concluding that co-existence of Ag2O and SnO2 NRs expedites photodegradation activity. Especially, 3 mol Ag addition led Ag2O/SnO2 photocatalyst displays the highest methylene blue dye degradation (96) under open sunlight in 30 min, and shows efficient redox behavior up to 6 cycles. Eventually, theoretical calculations such as DOS and NBO were carried out to support experimental counterpart.Graphical abstract
机译:摘要 在SnO2纳米棒(NRs)合成过程中,通过添加不同浓度的银(Ag)合成了p-n结型Ag2O/SnO2纳米棒(NRs)光催化剂。通过SEM和XRD分析证实了具有四方晶结构的SnO2 NRs和具有立方晶体结构的Ag2O纳米颗粒(NPs)。Ag 卫星峰 3d3/2 和 3d5/2 证实了样品中 Ag2O 的形成。SnO2 NRs的长度(约4至5μm)通过增加Ag2O添加量逐渐减小。与纯SnO2 NRs相比,Ag2O/SnO2光催化剂在短时间内表现出增强的光降解活性,这说明Ag2O和SnO2 NRs的共存加速了光降解活性。特别是,3 mol% Ag 添加量 LED Ag2O/SnO2 光催化剂在阳光照射下 30 min 内表现出最高的亚甲基蓝染料降解率 (96%),并且在长达 6 次循环中表现出高效的氧化还原行为。最终,进行了DOS和NBO等理论计算,以支持实验对应物。图形摘要

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