Zr₅Te₄ Crystals

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    Zr₅Te₄ Crystals

    Zr₅Te₄ is a layered transition metal telluride known for its remarkable electronic, optical, and thermoelectric properties. With a unique crystal structure and strong anisotropy, Zr₅Te₄ is a promising candidate for advanced materials research in optoelectronics, energy applications, and low-dimensional material studies. Our Zr₅Te₄ crystals are synthesized using the Chemical Vapor Transport (CVT) method, ensuring high purity, precise stoichiometry, and high crystallinity.

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

    Material Properties:
    Layered Structure: Facilitates exfoliation into thin layers for 2D material studies.
    Electronic Conductivity: Exhibits metallic or semimetallic behavior with high carrier mobility.
    Optical Absorption: Strong absorption in the visible-to-infrared range.
    Thermoelectric Performance: Promising for energy conversion and thermal management applications.

    Crystal Structure:
    Type: Layered orthorhombic structure
    Features: Cleavable layers ideal for thin-film fabrication and nanoscale research.

    Degree of Exfoliation:
    Ease of Use: Readily exfoliates into thin layers for 2D material research and device integration.

    Other Characteristics:
    Energy

    Applications: Potential for thermoelectric and catalytic systems.
    Optoelectronic Potential: Strong optical properties suitable for photonic devices.
    Quantum Properties: Promising for studies of low-dimensional electronic phenomena.
    Environmental Stability: Stable under inert conditions with sensitivity to air and moisture.

    Applications:
    Optoelectronics:
    Ideal for photodetectors, light-emitting devices, and other photonic applications. Energy

    Applications:
    Promising for thermoelectric devices and energy storage systems. Quantum Materials Research:
    Enables exploration of low-dimensional electronic and quantum properties.
    2D Material Studies:
    Suitable for exfoliation and integration into van der Waals heterostructures. Sensors:
    High sensitivity for environmental and chemical detection applications.

    Option 1

    > 10 mm², > 25 mm²