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Ceramic Targets
Created with Pixso. Indium Zinc Oxide IZO Target Material For Display Technology
Detail Information
Place of Origin:
china
Certification:
ISO9001、ISO14001、ISO45001、IAFT16949
Purity:
99.99%
Value:
98%
Name:
Indium Zinc Oxide Target (IZO)
Forming Process:
Sintering, Binding
Product Specifications:
Flat Targets, Rotary Targets, Custom-shaped Targets
Application Fields:
Display Technology, Photovoltaic Industry, Touchscreen Technology, Gas Sensors
Packaging Details:
Vacuum-sealed packaging, case-packed for storage and transport
Supply Ability:
Stable supply
Highlight:

Indium Zinc Oxide IZO Target

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IZO Target Material

Product Description

Did you know? There is a material that can make your phone screen clearer and more responsive! Yes, it's Indium Zinc Oxide (IZO) target material! It is the "unsung hero" behind high-end display technology. IZO is a typical transparent conductive oxide material, with excellent optical and electrical properties. It is primarily composed of indium oxide (In₂O₃) and zinc oxide (ZnO), with its atoms arranged in a specific pattern, usually in an amorphous or polycrystalline state.

Indium Zinc Oxide (IZO) target material maintains high light transmittance while also having low resistivity and good film uniformity, making it widely used in flat-panel displays, touchscreens, solar cells, and other fields.

Outstanding Features of Indium Zinc Oxide (IZO) Target Material

 

l Excellent Flexibility

 

IZO target material can deposit high-quality transparent conductive films at low temperatures. The films maintain stable optical and electrical properties even after repeated bending, stretching, and curling, without cracking or failure. This makes it ideal for flexible displays, foldable devices, and wearable electronics.

 

 

l High Light Transmittance

 

Films made from IZO targets have a visible light transmittance of over 80%. The surface is smooth and has low scattering, significantly improving the brightness and clarity of display screens, touch glass, and photovoltaic devices, providing users with a brighter and more realistic visual experience.

 

 

l Excellent Conductivity (Low Resistivity)

 

IZO target material has excellent conductivity, low resistivity, high charge transfer efficiency, and stable conductive performance, making it suitable for large-size touchscreens, transparent electrodes, and high-efficiency solar cells, which require strict electrical performance.

 

Wide Applications of Indium Zinc Oxide Target Material

 

l Display Technology

 

Indium Zinc Oxide (IZO) target materials are widely used as transparent conductive electrodes in LCD, OLED, and other flat-panel displays. It not only supports high-resolution picture quality but also combines low energy consumption and ultra-narrow bezel designs, making smartphone, tablet, and TV displays clearer and more delicate.

 

 

l Photovoltaic Industry

 

In solar cells, transparent conductive films made from IZO target materials effectively collect photogenerated carriers and conduct current, improving photoelectric conversion efficiency. This provides reliable support for efficiency improvements and green energy development in the photovoltaic industry.

 

 

l Touchscreen Technology

 

IZO (Indium Zinc Oxide) transparent conductive films are a leading material in touchscreen manufacturing. Their combination of high light transmittance and excellent conductivity provides a highly sensitive touch response and crystal-clear visual experiences. IZO ensures a smoother user experience across various devices, from smartphones and tablets to touchscreen laptops.

 

l Gas sensors

 

Indium Zinc Oxide (IZO) target materials are applied in gas sensors, primarily due to their electronic structure's sensitivity to gases. IZO materials change the carrier concentration or resistivity when gas molecules are adsorbed, enabling the detection of specific gas concentrations. For example, when IZO films are exposed to gases like formaldehyde, their conductivity changes due to the adsorption of gas molecules, making it an important material for formaldehyde sensors.