CuBi₃PbS₆ Crystals

Price range: £499.99 through £569.99

Select an option to request a quote

Flat rate shipping £15

    CuBi₃PbS₆ Crystals

    CuBi₃PbS₆ is a ternary chalcogenide material known for its unique semiconducting and optical properties. It exhibits strong optical absorption, excellent thermoelectric performance, and stability, making it a promising material for photovoltaic applications, thermoelectric devices, and energy storage research. Our CuBi₃PbS₆ crystals are synthesized using the Chemical Vapor Transport (CVT) method to ensure high purity, precise stoichiometry, and high crystallinity for advanced research and applications.

    Sample Size Options:
    Crystals larger than 10 mm²
    Crystals larger than 25 mm²

    Material Properties:
    Semiconducting Behavior: Features a bandgap suitable for photovoltaic and optoelectronic applications.
    Optical Properties: High absorption in the visible range, ideal for solar energy harvesting.
    Thermoelectric Performance: High Seebeck coefficient and low thermal conductivity for energy conversion.
    Environmental Stability: Maintains structural and electronic integrity under inert conditions.

    Crystal Structure:
    Type: Orthorhombic or monoclinic structure
    Features: Cleavable layers for thin-film and nanoscale research.

    Degree of Exfoliation:
    Ease of Use: Readily processed into thin films or nanoscale sheets for advanced applications.

    Other Characteristics:
    Photovoltaic Potential: High absorption and stability make it suitable for solar cells. Thermoelectric

    Applications: Promising for energy conversion and cooling technologies. Optoelectronic

    Applications: High carrier mobility and optical absorption for photonic devices.

    Applications:
    Photovoltaics:
    Ideal for solar cells and light-harvesting applications. Thermoelectric Devices:
    Suitable for energy harvesting and thermal management systems. Optoelectronics:
    Suitable for photodetectors, light-emitting devices, and other optoelectronic technologies.
    2D Material Research:
    Perfect for exfoliation into thin layers and integration with van der Waals heterostructures. Energy

    Applications:
    Utilized in thermoelectric and catalytic systems for energy storage and conversion.

    Option 1

    > 10 mm², > 25 mm²