ULPMAT

Alumina-doped Zinc Oxide (AZO)

Chemical Name:
Alumina-doped Zinc Oxide (AZO)
Formula:
ZnO-Al2O3
Product No.:
3008130800
CAS No.:
37275-76-6
EINECS No.:
Form:
Granules
HazMat:
Product ID Formula Purity Dimension Inquiry
3008130800GN001 ZnO-Al2O3 99.99% 1mm - 4 mm Inquire
3008130800GN002 ZnO-Al2O3 99.99% 3mm - 6 mm Inquire
Product ID
3008130800GN001
Formula
ZnO-Al2O3
Purity
99.99%
Dimension
1mm - 4 mm
Product ID
3008130800GN002
Formula
ZnO-Al2O3
Purity
99.99%
Dimension
3mm - 6 mm

Alumina-doped Zinc Oxide Granules Overview

Alumina-doped Zinc Oxide Granules are functional materials used in the formulation and pretreatment of transparent conductive oxide systems, commonly found in target sintering, thin film material research, and process verification stages.

We can reliably supply particle products with different particle sizes and doping concentrations, and provide application matching suggestions. Please contact us for samples and technical information.

Product Highlights

Uniform and controllable doping composition
Stable particle distribution and good flowability
Suitable for pressing and sintering processes
Stable chemical purity
Small batch variation
Easy for experimental scale-up and repeatability verification

Applications of Aluminum-Doped Zinc Oxide Granules

Sponge Target Preparation Raw Material: As a basic raw material for transparent conductive oxide targets, suitable for powder formulation and sintering before hot pressing or cold isostatic pressing.
Research on Transparent Conductive Material Systems: In conductive oxide formulation research, it can be used to control the resistivity and optical properties of materials, facilitating optimization of doping ratios.
Functional Ceramics and Electronic Material Development: Suitable for the experimental and pilot-scale stages of electronic ceramics and functional oxide materials, helping to verify material performance and process stability.
Laboratory and Process Validation Applications: Commonly used for new process route validation, material comparison testing, and thin film performance correlation studies.

FAQs

Q1: Can these particles be used directly for thin film deposition?
A1: They are usually used as precursor materials and require further shaping or target preparation before being used in the deposition process.

Q2: Will particle size affect subsequent processing?
A2: Particle size distribution affects pressing density and sintering effect. Appropriate specifications can be selected according to specific process requirements.

Q3: Can the aluminum doping content be adjusted?
A3: Different doping schemes can be provided according to application objectives to balance conductivity and material stability.

Q4: What precautions should be taken during product storage?
A4: It is recommended to store the product in a sealed, dry environment to avoid moisture affecting particle flowability.

Reports

Each batch is supplied with:
Certificate of Analysis (COA)
Technical Data Sheet (TDS)
Material Safety Data Sheet (MSDS)
Third-party testing reports available upon request

Why Choose Us?

We focus on the stable preparation and application matching of functional oxide raw materials, emphasizing particle morphology control, compositional consistency and process adaptability, and can provide long-term reliable material support for scientific research and industrial customers.

Molecular formula: ZnO-Al2O3
Appearance: White to light gray granules, uniform and dense
Density: Approximately 5.60 g/cm³
Crystal structure: Hexagonal Wurtzite (P6₃mc)

Inner Packaging: Vacuum-sealed bags and boxed to prevent contamination and moisture.

Outer Packaging: Cartons or wooden crates selected based on size and weight.

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