科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Journal of Advanced Ceramics2026-01-06· Materials science

Optimizing magnetic and electrical properties of MnZn ferrites via spatially engineered Ni distribution

Tao Wu, Chaoming Wang, Zenan Ma, Zhenyu He, Xiaofeng Zhang, Zhongwen Lan, Zhong Yu, Xiaona Jiang, Qifan Li, Chuanjian Wu, Ke Sun

原始摘要(英文原文)· Original abstract
Manganese-zinc (MnZn) ferrites are widely employed in electromagnetic interference (EMI) suppression due to their favorable magnetic properties. However, their practical performance is often constrained by the inherent trade-offs among key magnetic properties, such as initial permeability (μi), impedance (Z), saturation magnetic induction (Bs), and Curie temperature (Tc). Here, we demonstrate a strategy that simultaneously enhances these properties by combining trace Ni doping with precise control of the sintering atmosphere. The low Ni concentration, together with a carefully regulated oxygen partial pressure, suppresses the diffusion driving force of Ni2+, leading to its spatially non‑uniform distribution and preferential segregation at grain boundaries. This localized Ni enrichment facilitates the formation of transgranular magnetic domains across significant crystallographic misorientation grains. Furthermore, Ni-rich grain boundaries promote the migration of Fe3+ from octahedral (B) sites to tetrahedral (A) sites, thereby increasing the A-B and A-A bond angles, shortening the corresponding bond lengths, and strengthening the super-exchange interactions within the spinel lattice. As a result of this spatially engineered Ni distribution, the optimized MnZn ferrite exhibits significantly improved properties, including an μi of 11,648 at 10 kHz, Z0 of 43 Ω·mm-1 at 1 MHz, Bs of 524 mT at 1 kHz, 1194 A·m-1, and Tc of 174 ℃, outperforming conventional MnZn ferrites. This work highlights spatial compositional engineering as a viable route to advanced soft magnetic materials for next‑generation EMI suppression technologies.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Optimizing magnetic and electrical properties of MnZn ferrites via spatially engineered Ni distribution — 科研速览 Science Skim