FeBr₃ Crystals
FeBr₃ is a layered transition metal halide material with a van der Waals structure, exhibiting antiferromagnetic ordering and intriguing electronic properties. This material is studied for applications in spintronics, magneto-optics, and 2D material studies. Our FeBr₃ crystals are synthesized using a high-temperature vapor transport method for material research.
Sample Size Options:
Crystals larger than 10 mm²
Crystals larger than 25 mm²
Material Properties:
Intrinsic antiferromagnetism at low temperatures
Layered van der Waals structure
Transition metal halide with tunable magnetic and electronic properties
Crystal Structure:
Hexagonal structure with Cleavable layers, used for 2D exfoliation and thin-film research.
Degree of Exfoliation:
Can be exfoliated into thin layers for 2D material studies.
Other Characteristics:
Stable antiferromagnetic ordering below the Néel temperature (~15-20 K)
good environmental stability under inert conditions
For optical, magnetic, and electronic device research
Applications:
Spintronics: A material for spin-based devices and antiferromagnetic memory systems.
Quantum Materials Research: Supports exploration of low-dimensional magnetism and correlated electronic states.
Magnetic Sensors: Useful for nanoscale magnetic field sensing and magnetic applications.
Optoelectronics: Integrates with other 2D materials for tunable optical and electronic properties.
2D Material Studies: For investigating interlayer interactions and heterostructure designs.
| Option 1 | > 10 mm², > 25 mm² |
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