Neodymium-iron-boron Magnets

Neodymium-iron-boron magnets are high-performance permanent magnets made primarily from neodymium, iron, and boron, valued for producing strong magnetic fields in compact designs. Their strength arises from a crystalline Nd₂Fe₁₄B phase with high magnetic anisotropy, which resists changes in magnetization and provides high remanence and coercivity; manufacturing may involve sintering or bonding the magnetic material. In engineering, these magnets enable smaller, lighter electric motors, generators, actuators, sensors, speakers, and magnetic couplings. Their performance can be affected by temperature and corrosion, so protective coatings, thermal management, and appropriate material selection are important in practical designs.

Neodymium-iron-boron Magnets - Related Videos

Research

JoVE Journal - Bioengineering

Fabrication of a Functionalized Magnetic Bacterial Nanocellulose with Iron Oxide Nanoparticles

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Cited by 42 •

2016

Here, we present a protocol to make a bacterial nanocellulose (BNC) magnetic for applications in damaged blood vessel reconstruction. The BNC was synthesized by G. xylinus strain. On the other hand, magnetization of the BNC was realized through in situ precipitation of Fe2+ and Fe3+ ferrous ions inside the BNC mesh.

Microwave-driven Synthesis of Iron Oxide Nanoparticles for Fast Detection of Atherosclerosis

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Cited by 2 •

2016

Microwave technology enables extremely fast synthesis of iron oxide nanoparticles for atherosclerosis plaque characterization. The use of an aminobisphosphonate in the external side of the nanoparticle provides a fast accumulation in the atherosclerotic area.

Quantitating Iron Transport Across the Mouse Placenta In Vivo Using Nonradioactive Iron Isotopes

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Cited by 3 •

2022

This article demonstrates how to prepare and administer transferrin-bound nonradioactive isotopic iron for studies of iron transport in mouse pregnancy. The approach for quantifying isotopic iron in fetoplacental compartments is also described.

Assessment of Boron Doped Diamond Electrode Quality and Application to In Situ Modification of Local pH by Water Electrolysis

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Cited by 5 •

2016

A protocol is described for the characterization of the key electrochemical parameters of a boron doped diamond (BDD) electrode and subsequent application for in situ pH generation experiments.

Cell Labeling and Targeting with Superparamagnetic Iron Oxide Nanoparticles

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Cited by 20 •

2015

Targeted cell delivery is useful in a variety of biomedical applications. The goal of this protocol is to use superparamagnetic iron oxide nanoparticles (SPION) to label cells and thereby enable magnetic cell targeting approaches for a high degree of control over cell delivery and localization.

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