2D Materials / Alfa Chemistry
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Iron Telluride (FeTe)

Iron Telluride (FeTe)

Catalog Number: ACMA00022877

CAS Number:

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Description

Description FeTe is an iron-based vdW layered superconductor. Iron telluride (FeTe) is a member of layered materials. FeTe is considered the parent material of the simplest family of iron-based superconductors.

Features And Benefits

Features And Benefits The crystal structure of iron telluride consists of successively stacked layers of FeTe, in which a square lattice layer of iron atoms is sandwiched between two twice as sparse layers of bonded chalcogenide atoms. The crystals were grown using the flux zone method, which is known to yield well-crystallized and defect-free vdW superconductors.

Application

Application New 2D semiconductors, topological insulators, and superconductors have numerous applications in advanced technologies, and Alfa Chemistry engineers can guide customers in material characterization and selection.

Specifications

Molecular Weight 183.45 g/mol
Purity (5N) 99.999%
Density 6800 kg/m3
Appearance Grayish black pieces
Characteristics High electronic purity (6N or better)
Single crystal
Single phase
Perfect stoichiometry
Characterization Methods SIMS, XRD, EDS, Raman
Crystal Structure And Type Tetragonal FeSe is a superconductor with a transition temperature Tc of 8 K and shows a huge enhancement of Tc with applying pressure
Degree Of Exfoliation Easy to exfoliate
Dimension ~10 mm
Electrical Property Superconducting, metallic
Exact Mass 313.746
Monoisotopic Mass 315.747
Production Method Bridgman technique (flux zone grown crystals are available on demand)
Type Synthetic

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