Sb₂Te Crystals
Sb₂Te is a layered thermoelectric material with a van der Waals structure and thermoelectric and electronic properties. Its Seebeck coefficient, low thermal conductivity, and carrier mobility support applications in energy harvesting, quantum materials research, and optoelectronics. Sb₂Te crystals are synthesized using the Chemical Vapor Transport (CVT) method.
Sample Size Options:
Crystals larger than 10 mm²
Crystals larger than 25 mm²
Material Properties:
Layered van der Waals Structure: Permits exfoliation into thin layers for 2D material studies.
Thermoelectric Performance: A Seebeck coefficient and low thermal conductivity.
Electronic Conductivity: Carrier mobility, applicable to electronic applications.
Optical Absorption: The material absorbs light in the visible and near-infrared range.
Crystal Structure:
Type: Rhombohedral layered structure
Features: Cleavable layers, applicable for thin-film fabrication and nanoscale research.
Degree of Exfoliation:
Ease of Use: Exfoliates into monolayers or few-layer sheets for research.
Other Characteristics:
Thermoelectric Efficiency: Applicable for power generation and thermal management applications.
Quantum Properties: Applicable to studying low-dimensional electronic and thermoelectric phenomena.
Optoelectronic Potential: Used for photonic and energy applications.
Applications:
Thermoelectric Devices:
Applicable for energy harvesting, cooling systems, and thermal-to-electric conversion. Quantum Materials Research:
Permits exploration of low-dimensional transport and topological phenomena.
2D Material Studies:
Applicable to exfoliation into thin layers and assembly with van der Waals heterostructures. Optoelectronics:
Used for photodetectors, infrared sensors, and other photonic devices. Energy Applications: Applicable to thermoelectric energy conversion and energy storage systems.
| Option 1 | > 10 mm², > 25 mm² |
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