Preparation, Characterization and Photocatalytic Activity studies of Ag+, Cu2+ and Sn2+-doped Li2GeTeO6 under Visible Light Irradiation

Vithal Muga, Vaishnavi Kammara, Venkataswamy Perala, Manasa Sunku, Ramaswamy Kadari, Hima Bindu Gaddameedi, Sudhakar Reddy Chandiri
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Abstract

Doping of cations into wide bandgap semiconductors is an effective method of increasing photocatalytic activity. This work aims to find out how dopant ions like Ag + , Cu 2+ and Sn 2+ affect the structural, optical and photocatalytic properties of Li 2 GeTeO 6 . The parent Li 2 GeTeO 6 (LGTO) was synthesized by conventional solid-state method, whereas the Ag + , Cu 2+ and Sn 2+ doped Li 2 GeTeO 6 were prepared by a simplistic ion-exchange method. Techniques such as XRD, FT-IR, SEM-EDS, N 2 adsorption-desorption analysis, UV-Vis DRS, XPS, and PL were employed to examine the physico-chemical properties of the as-prepared materials and their photocatalytic activities on the degradation of methyl violet (MV) under visible light irradiation. The acquired photocatalytic activity results revealed that all doped samples displayed enhanced photocatalytic performance compared with parent LGTO. The Ag-LGTO had the best photocatalytic activity for MV degradation, with 68.6% degradation efficiency in 180 min of irradiation. Scavenging experiments were carried out to determine the role of various active species generated on the surface of Ag-LGTO during the photocatalytic degradation of MV. The reusability and stability of Ag-LGTO up to five cycles against MV degradation were also investigated. A photocatalytic mechanism for MV degradation over the Ag-LGTO sample was also proposed based on the findings described above. showed the higher photocatalytic activity towards the MV degradation owing to the higher surface area, enhanced visible light absorption and reduced recombination rate of photogenerated electron-hole pairs compared to other catalysts.
Ag+、Cu2+和Sn2+掺杂Li2GeTeO6的制备、表征及可见光下光催化活性研究
在宽禁带半导体中掺杂阳离子是提高光催化活性的有效方法。本研究旨在发现Ag +、cu2 +和Sn 2+等掺杂离子如何影响Li 2 GeTeO 6的结构、光学和光催化性能。母晶Li 2 GeTeO 6 (LGTO)采用常规固相法合成,而掺杂Ag +、Cu 2+和Sn 2+的Li 2 GeTeO 6采用简化离子交换法制备。采用XRD、FT-IR、SEM-EDS、n2吸附-解吸分析、UV-Vis DRS、XPS、PL等技术考察了所制备材料的理化性质及其在可见光下降解甲基紫(MV)的光催化活性。获得的光催化活性结果表明,与母体LGTO相比,所有掺杂样品都表现出增强的光催化性能。Ag-LGTO对MV的光催化降解效果最好,在180 min的光催化降解效率为68.6%。通过清除实验确定Ag-LGTO表面产生的各种活性物质在光催化降解MV过程中的作用。研究了Ag-LGTO在5次循环中抗MV降解的可重用性和稳定性。基于上述发现,还提出了Ag-LGTO样品上MV降解的光催化机制。与其他催化剂相比,由于具有更高的比表面积、增强的可见光吸收和降低的光生电子-空穴对复合速率,对MV降解表现出更高的光催化活性。
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