Rameshwar B. Borade

ORCID: 0000-0001-7878-5301
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About
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Research Areas
  • Magnetic Properties and Synthesis of Ferrites
  • Electromagnetic wave absorption materials
  • Iron oxide chemistry and applications
  • Multiferroics and related materials
  • Magneto-Optical Properties and Applications
  • Advancements in Battery Materials
  • X-ray Diffraction in Crystallography

G.S. Science, Arts And Commerce College
2018-2020

Osmania University
2018

Sol-gel-synthesized Co-Cu-Zn ferrite nanoparticles diluted with Dy3+ ions were investigated in terms of their structural, morphological, elastic, magnetic and dielectric properties. X-ray diffraction patterns showed the formation a single-phase cubic spinel structure. As concentration was increased, lattice length gradually increased from 8.340 to 8.545 Å, obeying Vegard's law. The Williamson-Hall (W-H) method employed observe change strain. Crystallite size obtained W-H plots followed...

10.1039/d0ra05274d article EN cc-by RSC Advances 2020-01-01

Nanocrystalline Ce-substituted yttrium iron garnet (YIG) powders of different compositions, Y3-x Ce x Fe5O12 (0 ≤ 2.0), were synthesized by a combination sol-gel auto-combustion and solid-state synthesis techniques. The as-obtained powder samples sintered at 1150 °C for 10 h. structure formation is confirmed the X-ray diffraction pattern, which shows that calculated lattice parameter increased = 1.0 decreasing trend ≥ with addition cerium ions. from 12.38 Å to 12.41 whereas it decreased...

10.1039/c8na00123e article EN cc-by Nanoscale Advances 2018-09-17

Ferrite nanoparticles of Ni[Formula: see text]Mn[Formula: text]Zn[Formula: text]Fe[Formula: text]Ce x O 4 ferrite system were produced using sol–gel auto combustion technique. X-ray diffraction analysis confirms the single phase cubic spinel structure samples with space group Fd-3m. Replacement Fe[Formula: text] ions by Ce[Formula: increases lattice parameter 8.4105 Å to 8.4193. Average crystallite size obtained from Scherrer method varies 21.73[Formula: text]nm 22.71[Formula: replacement...

10.1142/s1793292021500594 article EN NANO 2021-04-06

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10.2139/ssrn.4681333 preprint EN 2024-01-01
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