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ЖУРНАЛЫ // Наносистемы: физика, химия, математика

Наносистемы: физика, химия, математика, 2020, том 11, выпуск 4, страницы 434–443 (Mi nano543)

Temperature dependent structural, morphological, FTIR, optical, magnetic properties of NiMgZn ferrites
T. Vidya Sagar, T. Subba Rao, N. Raghuram

Эта публикация цитируется в следующих статьяx:
  1. P. Swetha, R. Sagayaraj, “A Comprehensive Review on the Synthesis, Characterization, and Applications of Spinel Ferrite Nanoparticles”, Prabha Materials Science Letters, 5:1 (2026), 74  crossref
  2. Priti A. Ingle, S. B. Kadam, Rameshwar B. Borade, Ketan P. Gattu, V. D. Mote, R. H. Kadam, S. S. More, “Tailoring Structural and Magnetic Properties of Co–Zn Ferrite Nanoparticles via Erbium Substitution”, J Inorg Organomet Polym, 2025  crossref
  3. Rutuja B. Sathe, Chandan U. Narayankar, Raghunath H. Patil, Sandip V.Patil, Nesrine Abderrahim, Rajendra P. Patil, Sarjerao B. Patil, “Studies on sol–gel autocombustion processed Ni–Zn–Mg ferrite system: effect of calcination temperature, thermoelectric power, and gas sensing application”, J Mater Sci: Mater Electron, 35:27 (2024)  crossref
  4. Preanka Mondal, Sumi Akter, Probal Roy, Iftakhar Bin Elius, M. N. I. Khan, S. S. Sikder, “Tunable annealing effect to enhance structural and magnetic properties of spinel cobalt magnesium ferrite nanoparticles”, AIP Advances, 14:10 (2024)  crossref
  5. Arun V. Bagade, Sangita N. Pund, Pratik A. Nagwade, Brajesh Kumar, Satish U. Deshmukh, Anant B. Kanagare, “Ni-doped Mg-Zn nano-ferrites: Fabrication, characterization, and visible-light-driven photocatalytic degradation of model textile dyes”, Catalysis Communications, 181 (2023), 106719  crossref
  6. M. Sameeh, M. Khairy, T. Esawy, W.A.A. Bayoumy, “Cation distribution, composition effect on magnetic and electrical properties of nano ZnMn2-xCrxO4 (x= 0, 1, 2)”, Journal of Materials Research and Technology, 19 (2022), 877  crossref


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