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Nb-Doped WSe₂ Crystals

SKU Nb-Doped WSe₂-1-1 Category

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Description

Nb-Doped WSe₂ Crystals (Niobium-Doped Tungsten Diselenide)

Nb-doped WSe₂ is a layered transition metal dichalcogenide (TMDC) with a van der Waals structure. Niobium doping introduces p-type conductivity and significantly modifies the electronic and optical properties of WSe₂, making it highly suitable for applications in optoelectronics, spintronics, and energy-related technologies.

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 thin layers for advanced material research.
Electronic Tuning: Niobium doping introduces p-type conductivity and adjusts the band structure for enhanced performance.
High Optical Absorption: Strong absorption in the visible-to-infrared range, ideal for photonic applications.
Improved Carrier Dynamics: Enhanced charge carrier mobility and conductivity for electronic devices.

Crystal Structure:
Type: Hexagonal layered structure
Features: Cleavable layers, ideal for thin-film fabrication and nanoscale studies.

Degree of Exfoliation:
Ease of Use: Readily exfoliates into monolayers or few-layer sheets for 2D material studies and device integration.

Other Characteristics:
Optoelectronic Performance: High photoluminescence and tunable bandgap for advanced optoelectronic applications.
Quantum Potential: Enables research on p-type doping effects in topological states and quantum transport phenomena.
Energy Applications: Enhanced catalytic activity for hydrogen evolution reactions (HER) and other energy-related processes.

Applications:
Optoelectronics:
Ideal for light-emitting diodes, photodetectors, and photovoltaic devices.
Quantum Materials Research:
Suitable for studying doping-induced quantum phenomena and p-type conductivity in TMDCs.
2D Material Studies:
Perfect for integration into van der Waals heterostructures and nanoscale devices.
Energy Applications:
Promising for catalytic processes, including hydrogen evolution reactions (HER).
Spintronics:
Enables exploration of spin-based devices and spin-orbit interactions in doped TMDCs.

Additional information

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N/A