SbTe Crystals
SbTe is a layered thermoelectric material with a van der Waals structure and thermoelectric and electronic properties. Its Seebeck coefficient, low thermal conductivity, and surface states support thermoelectric energy conversion, quantum materials research, and spintronic applications. SbTe 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: Facilitates exfoliation into thin layers for 2D material studies.
Thermoelectric Performance: A Seebeck coefficient and low thermal conductivity.
Electronic Conductivity: Carrier mobility for electronic and energy applications.
Optical Properties: Absorption in the visible-to-infrared range.
Crystal Structure:
Type: Rhombohedral layered structure
Features: Cleavable layers, applicable to 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 to power generation and thermal management.
Quantum Properties: Used for studying low-dimensional electronic and thermoelectric phenomena. Spintronics Applications: Applicable for exploring spin-related phenomena and spintronic devices.
Applications:
Thermoelectric Devices:
Applicable for energy harvesting, cooling systems, and thermal-to-electric conversion. Quantum Materials Research:
Permits exploration of topological states and low-dimensional transport properties. Spintronics:
Applicable to spintronic devices and investigating spin-orbit coupling.
2D Material Studies:
Applicable for exfoliation into thin layers and assembly with van der Waals heterostructures. Optoelectronics:
Applicable to photodetectors and other optoelectronic devices.
| Option 1 | > 10 mm², > 25 mm² |
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