MnPSe₃ Crystals
MnPSe₃ is a layered antiferromagnetic semiconductor with a van der Waals structure, has its strong in-plane magnetic anisotropy and high semiconducting properties. It exhibits Néel-type antiferromagnetic ordering, making it an the material for spintronics, quantum magnetism studies, and 2D material research. Our MnPSe₃ crystals are synthesized using the Chemical Vapor Transport (CVT) method, with high purity, precise stoichiometry, and strong crystallinity.
Sample Size Options:
Crystals larger than 10 mm²
Crystals larger than 25 mm²
Crystals larger than 100 mm²
Material Properties:
Layered van der Waals Structure: Facilitates exfoliation into monolayers or few-layer sheets for 2D material studies.
Antiferromagnetic Ordering: Exhibits Néel-type antiferromagnetism with strong magnetic anisotropy.
Semiconducting Properties: Moderate bandgap (~2.2 eV), applicable for electronic and optoelectronic devices.
High Magnetic Anisotropy: Strong in-plane magnetic properties applicable to quantum spin studies.
Crystal Structure:
Type: Monoclinic layered structure
Features: Cleavable layers applicable for thin-film fabrication and nanoscale device research.
Degree of Exfoliation:
Ease of Use: Readily exfoliated into thin layers for specialized materials research and device applications.
Other Characteristics:
Quantum Magnetism: Permits exploration of low-dimensional magnetic phenomena and quantum spin liquids.
Spintronic Potential: Applicable to magnetic memory devices and spin-based electronic components.
Environmental behavior: Consistent under ambient conditions, making it applicable to long-term applications.
Applications:
Quantum Materials Research:
Applicable for studying 2D magnetic ordering, spin-wave dynamics, and quantum magnetism. Spintronics:
High potential for spin-based devices, magnetic sensors, and memory technologies.
2D Material Studies:
Applicable for exfoliation into monolayers and assembly into van der Waals heterostructures. Optoelectronics:
Promising for photodetectors, light-emitting devices, and optical switches. Energy
Applications:
Applicable to catalytic applications, energy storage, and battery technologies. Synthesis Method:
Chemical Vapor Transport (CVT): With quality crystals with purity and structural integrity.
| Option 1 | > 10 mm², > 100 mm², > 25 mm² |
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