Fabrication and characterization of CoxMn0.25−xMg0.75Fe2O4 nanoparticles for H2S sensing applications

HI Mahdi, TM Al-Saadi, NA Bakr - Journal of Materials Science: Materials …, 2023 - Springer
Cobalt-doped manganese–magnesium ferrite nanoparticles CoxMn0. 25− xMg0. 75Fe2O4
(0.00≤ x≤ 0.20) were successfully synthesized via an autocombustion (sol–gel) technique …

[PDF][PDF] Studying the Gas Sensitivity and Magnetic Properties of Magnesium Ferrite Prepared by the Sol-Gel Route

HI Mahdi, NA Bakr, TM Al-Saadi - Iraqi Journal of Science, 2024 - iasj.net
Nickel-doped manganese–magnesium ferrite (NixMn0. 25-xMg0. 75Fe2O4) was prepared
using the auto-combustion method. X-ray diffraction patterns showed a single ferrite spinel …

Preparation and Characterization of NixMn0. 25-xMg0. 75Fe2O4 Nano-ferrite as NO2 Gas Sensing Material

HI Mahdi, NA Bakr, TM Al-Saadi - arxiv preprint arxiv:2301.01728, 2023 - arxiv.org
NixMn0. 25-xMg0. 75Fe2O4 nano-ferrites (where x= 0.00, 0.05, 0.10, 0.15 and 0.20) were
produced via sol-gel auto-combustion technique. Investigations were done into how the …

[PDF][PDF] Synthesis and Characterization of (Ni, Co) xMn0. 25-xMg0. 75Fe2O4 Nanoparticles

HI Mahdi, NA Bakr, TM Al-Saadi - Academic Science Journal, 2024 - iasj.net
Abstract Ni-Co-Mn-Mg ferrite nanoparticles with the formula (Ni, Co) xMn0. 25-xMg0.
75Fe2O4 were synthesized in this work by employing the sol-gel auto-combustion process …

Synthesis and modeling of manganese ferrite nanoparticles for magnetic hyperthermia applications

ME Thornton - 2022 - scholarscompass.vcu.edu
Biologically targeted magnetic hyperthermia (MH) is a promising cancer therapeutic that is
both non-invasive and has the potential to serve as a single-modality cancer treatment. MH …