Effect of Zr substitution on photocatalytic and magnetic properties of lanthanum titanate

Author:

Prabitha Vasumathi Gopala1,Sahadevan Jhelai2ORCID,Subramaniam Kamalraj2,Sreejith Velayudhan Pillai3,Kumar Subalakshmi4,Sankaran Esakki Muthu5,Husain Fohad Mabood6,Kaliamurthy Ashok Kumar7

Affiliation:

1. Department of Physics , Government College for Women , Thiruvananthapuram 695014 , Kerala , India

2. Centre for Biophotonics and Technology, Department of Biomedical Engineering , Karpagam Academy of Higher Education , Coimbatore 641021 , Tamil Nadu , India

3. Department of Statistics , Government Arts College , Thiruvananthapuram 695014 , Kerala , India

4. Division of Physics and Department of Semiconductor Science , Dongguk University – Seoul , Seoul 04620 , Republic of Korea

5. Centre for Material Science, Department of Physics , Karpagam Academy of Higher Education , Coimbatore 641021 , Tamil Nadu , India

6. Department of Food Science and Nutrition , King Saud University , Riyadh 11451 , Kingdom of Saudi Arabia

7. Department of Energy and Materials Engineering , Dongguk University , Seoul 04620 , Republic of Korea

Abstract

Abstract Photocatalysis is considered a highly promising method to treat water samples contaminated with organic pollutants. Zirconium-doped lanthanum titanate (LaTi1−x Zr x O3, where x = 0 (LTO) and 0.05 (LZTO)) NPs were synthesized by the auto-combustion method and characterized by X-ray diffraction analysis (XRD), UV–visible diffuse reflectance spectroscopy (UV–vis DRS), Fourier transform infrared (FTIR), field emission scanning electron microscope (FE-SEM), and Raman spectroscopy. LTO and LZTO have tetragonal structure with an average crystalline size of 16 nm and 13 nm respectively. The band gap from UV–vis DRS was estimated to be 3.52 and 3.36 eV, respectively. The analysis of surface morphology indicates that the addition of Zr disrupted the crystal structure of LTO and transformed its spherical morphology into a rod-like structure. The Raman spectra of the LTO and LZTO crystal structure revealed the presence of A g and B 2g symmetry phonons. The magnetic properties were analysed by vibrating sample magnetometer (VSM) which confirmed the ferromagnetic behaviour. LZTO nanoparticles have been shown to have an efficiency of 92 % after 80 min of degradation. The synthesized LZTO samples exhibited enhanced ferromagnetic behaviour and improved photoactivity for the degradation of methylene blue dye as compared to those of pure LTO, make LZTO a good choice for magnetically separable photocatalysts that effectively purify contaminated water.

Funder

Department of Science and Technology (DST) & Researchers Supporting Project, Saudi Arabia.

Publisher

Walter de Gruyter GmbH

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