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◆ Materials Science and Engineering B2025-10-04· Materials science

Black pepper assisted sol-gel auto-combustion synthesis of yttrium doped cobalt ferrite and characterizations for enhancement of photocatalytic dye degradation efficiency

Sudarshan S. Gawali, Subhash M. Wani, Yogesh P. Ubale, Pratik S. Patil, Kalyani Deshmukh, K. M. Jadhav

原始摘要(英文原文)· Original abstract
Yttrium doped cobalt ferrite nanoparticles (CoFe 2-x YₓO₄, x = 0.00, 0.01, 0.02, 0.03, 0.04, 0.05) were prepared by green synthesis approach. Piper nigrum (black pepper) was used as a biogenic fuel. TGA-DTA studies indicate that CoFe 2-x YₓO₄ nanoparticles were formed at 600 °C. The single phase cubic spinel structure was verified through X-ray diffraction analysis. The crystallite size obtained to be 23 nm - 15 nm. The lattice constant decreases with yttrium ion doping (x ≤ 0.05). The two absorption bands below 1000 cm −1 were observed in FTIR spectra characterizes the spinel ferrite structure. FE-SEM images reflect spherical symmetry with grain sizes between 26 nm and 21 nm. The EDS analysis confirms the presence of all the elements in stoichiometric proportion. The elemental composition was further validated using XPS analysis. The Tauc plot suggest the increase in band gap values from 1.94 eV and 2.12 eV. The M-H curve exhibits the ferrimagnetic behaviour at 300 K. The blocking temperature suggest the superparamagnetic nature above 360 K from ZFC-FC curve. The MB dye degradation efficiency increases with increasing Y doping. The rate constant also increases with yttrium doping. The presence of H 2 O 2 as an oxidizing agent in the solution increases the degradation efficiency as well as rate constant of the reaction.
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Black pepper assisted sol-gel auto-combustion synthesis of yttrium doped cobalt ferrite and characterizations for enhancement of photocatalytic dye degradation efficiency — 科研速览 Science Skim