V-Doped MoSe₂ Crystals

Price range: $696.09 through $1,252.98

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V-Doped MoSe₂ Crystals

V-doped MoSe₂ is a layered transition metal dichalcogenide (TMDC) with a van der Waals structure. Vanadium doping introduces magnetic properties, modifies the electronic band structure, and enhances the material’s catalytic and optoelectronic performance. These characteristics make V-doped MoSe₂ a promising material for spintronics, quantum research, and energy applications.

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 studies.
Magnetic Behavior: Vanadium doping introduces magnetic properties, permits spintronic and magnetic applications.
Enhanced Catalytic Activity: Improved performance in hydrogen evolution reactions (HER) and other electrocatalytic processes.
Optoelectronic Properties: Enhanced photoluminescence and charge carrier mobility for specialized devices.

Crystal Structure:
Type: Hexagonal layered structure
Features: Cleavable layers applicable for thin-film fabrication and nanoscale research.

Degree of Exfoliation:
Ease of Use: Readily exfoliates into thin layers for specialized research and device assembly.

Other Characteristics:
Quantum

Applications: Permits exploration of doping-induced quantum phenomena and spin-related behaviors. Energy

Applications: Promising for catalysis and energy storage systems.
Variable Electronic Properties: Doping permits for bandgap modification and enhanced electronic performance.

Applications:
Spintronics:
Applicable to spin-based devices and exploring spin-orbit interactions in doped TMDCs. Optoelectronics:
Applicable for light-emitting diodes, photodetectors, and photovoltaic devices. Quantum Materials Research:
Permits studies on magnetic and quantum phenomena in 2D materials. Energy

Applications:
High catalytic activity for hydrogen evolution reactions (HER) and energy conversion technologies.
2D Material Studies:
Applicable for assembly into van der Waals heterostructures and nanoscale devices.

Option 1

> 10 mm², > 100 mm², > 25 mm²