ULPMAT

Copper Indium Gallium Selenide (CIGS)

Chemical Name:
Copper Indium Gallium Selenide (CIGS)
Formula:
CuInGaSe
Product No.:
2949313400
CAS No.:
12018-95-0
EINECS No.:
Form:
Sputtering Target
HazMat:
Product ID Formula Purity Dimension Inquiry
2949313400ST001 CuInGaSe 99.99% Ø 25.4 mm x 3.175 mm Inquire
2949313400ST002 CuInGaSe 99.99% Ø 50.8 mm x 3.175 mm Inquire
2949313400ST003 CuInGaSe 99.99% Ø 50.8 mm x 6.35 mm Inquire
2949313400ST004 CuInGaSe 99.99% Ø 76.2 mm x 6.35 mm Inquire
2949313400ST005 CuInGaSe 99.99% Ø 152.4 mm x 6.35 mm Inquire
2949313400ST006 CuInGaSe 99.99% Ø 203.2 mm x 6.35 mm Inquire
Product ID
2949313400ST001
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 25.4 mm x 3.175 mm
Product ID
2949313400ST002
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 50.8 mm x 3.175 mm
Product ID
2949313400ST003
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 50.8 mm x 6.35 mm
Product ID
2949313400ST004
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 76.2 mm x 6.35 mm
Product ID
2949313400ST005
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 152.4 mm x 6.35 mm
Product ID
2949313400ST006
Formula
CuInGaSe
Purity
99.99%
Dimension
Ø 203.2 mm x 6.35 mm

Copper Indium Gallium Selenide Sputtering Targets Overview

Copper Indium Gallium Selenide sputtering targets are primarily used to prepare highly uniform compound semiconductor thin films, widely applied in optoelectronic functional thin films and related materials research.

We can provide sputtering targets with different element ratios, sizes, and structures, and support customization according to process requirements. Please contact us for solutions.

Product Highlights

Stable multi-element stoichiometry
High target density
Uniform sputtering rate
Good film composition consistency
Suitable for continuous deposition processes
Supports the development of complex thin film structures

Applications of Copper Indium Gallium Selenide Sputtering Target

Thin Film Solar Absorber Layer Preparation: This target is commonly used to deposit functional absorber layers, and performance optimization and structural verification can be achieved through composition adjustment.
Research on Optoelectronic Functional Thin Films: Thin films prepared by sputtering processes are suitable for testing key performance aspects such as light absorption and electrical response.
Semiconductor Material Process Exploration: In compound semiconductor systems, this material helps study the impact of deposition parameters on thin film quality.

FAQs

Q1: Can the element ratio be adjusted according to specific applications?
A1: Yes, the target composition can be designed and manufactured according to the requirements of the target thin film.

Q2: Is the target prone to compositional deviation during sputtering?
A2: Within a reasonable process window, the film composition maintains good stability.

Q3: Is it more suitable for DC or RF sputtering?
A3: It is compatible with multiple sputtering modes; the specific mode needs to be selected based on equipment conditions.

Q4: What issues should be considered during target storage and transportation?
A4: Vacuum or inert gas packaging is recommended to avoid moisture and mechanical shock.

Report

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 have accumulated systematic experience in the preparation and quality control of compound semiconductor sputtering targets. From composition design and sintering to finished product testing, we have mature processes to provide customers with stable and reliable material consistency, flexible customization capabilities, and continuously controllable delivery assurance, supporting the efficient advancement of scientific research and industrial projects.

Chemical Formula: CuInGaSe₂
Appearance: Dark gray to black dense sputtering target
Crystal Structure: Tetragonal

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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