Germanium Telluride Powder 99.999% -60 mesh ATOMFAIR®

Price range: $319.00 through $1,059.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

GeTe powder, 99.999% purity, -60 mesh, CAS 12025-39-7. Rhombohedral hR6 semiconductor for low-temperature superconductivity research. Order now.

SKU: AF-FM-T-GETE-5N00-SP00
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Atomfair Germanium Telluride (GeTe) Powder, 99.999% Purity, -60 mesh


Atomfair Germanium Telluride (GeTe) Powder, 99.999% Purity, -60 mesh

Product Description

Atomfair Germanium Telluride (GeTe) Powder is supplied as a powder with 99.999% purity and -60 mesh. It is intended for low-temperature superconductivity research.

Technical Specifications

Parameter Specification / Available Values
Product Germanium Telluride (GeTe) Powder
Chemical Formula GeTe
CAS Number 12025-39-7
Purity 99.999%
Specification -60 mesh
Molar Mass 200.21 g/mol
Density 6.14 g/cm³
Melting Point 725 °C
Band Gap 0.6 eV
Refractive Index 5
Crystal Structure Rhombohedral, hR6
Physical State Powder

Customization & Ordering

Package availability, minimum order quantity, pricing, and lead time are confirmed during quotation.

Key Features and Advantages

  • GeTe shows semiconducting conduction and ferroelectric behavior.
  • Rhombohedral hR6 structure with a band gap of 0.6 eV.
  • Doped germanium telluride for low-temperature superconductivity research.

APPLICATION SCOPE: low-temperature superconductivity research

DOCUMENTATION: COA and SDS can be provided upon request for batch-specific confirmation.

LABORATORY PROCUREMENT SUPPORT

For grade selection, particle-size confirmation, documentation support or custom specification review, contact our technical sales team.

E-MAIL: inquiry@atomfair.com

What is the significance of the 0.6 eV band gap and rhombohedral hR6 structure in Germanium Telluride for low-temperature superconductivity research?

The 0.6 eV band gap and rhombohedral hR6 crystal structure are fundamental properties that enable GeTe's semiconducting conduction and ferroelectric behavior. These characteristics make doped GeTe a candidate for low-temperature superconductivity research, as the electronic and structural parameters directly influence superconducting transition behavior in the material.

What are the particle size and purity specifications for this GeTe powder, and how do they affect its use in superconductivity experiments?

The powder is supplied at 99.999% purity with a -60 mesh specification (particles pass through a 60-mesh sieve). This high purity and fine particle size are critical for consistent stoichiometry and homogeneity in low-temperature superconductivity research, as even trace impurities can alter electronic properties and superconducting behavior.

What batch-specific documentation is available for this Germanium Telluride powder to support quality control for research applications?

A Certificate of Analysis (COA) and Safety Data Sheet (SDS) can be provided upon request for batch-specific confirmation. These documents confirm the exact purity, mesh size, and other measured parameters for the specific lot, which is essential for reproducibility in low-temperature superconductivity studies.

Atomfair Germanium Telluride (GeTe) Powder at 99.999% purity and -60 mesh provides a high-purity base material with semiconducting and ferroelectric properties for low-temperature superconductivity research, though it requires cryogenic infrastructure and typically additional doping steps.

Positive

  • High Purity and Controlled Particle Size: 99.999% purity and -60 mesh specification ensure minimal impurities and consistent particle size for reproducible experimental results.
  • Semiconducting and Ferroelectric Properties: GeTe exhibits semiconducting conduction and ferroelectric behavior with a band gap of 0.6 eV, making it suitable for low-temperature superconductivity research.

Trade-offs

  • Low-Temperature Infrastructure Required: The intended application in low-temperature superconductivity research necessitates access to cryogenic equipment and expertise, which may not be available in all laboratories.
  • Requires Doping for Superconductivity: The product as supplied is undoped GeTe; achieving superconductivity typically requires additional doping, adding a processing step for the researcher.

Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.

To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.

Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).

Package

5g, 10g, 25g

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