901065
Aluminum-doped zinc oxide ink for inkjet printing
Synonym(s):
AZO dispersion, AZO ink, Al-doped ZnO ink, Helios′Ink H-DZ01015 semiconductive ink
About This Item
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description
Conductivity: 10-3-10-4 S/cm
Work function: 3.6 ± 0.1 eV
Quality Level
form
liquid (dispersion)
sheet resistance
10-20 Ω/sq (in combination with silver nanowires)
color
light yellow
surface tension
25 mN/m±5 mN/m
viscosity
10 mPa.s±3 mPa.s(20 °C)
capacity
≥0.9 % loading (Nanoparticles loading)
Related Categories
General description
- Helios′Ink H-DZ01015 semi conductive ink developed for the printed electronics is particularly well suited for OPV and PV.
- This ink shows great performance on Drop On Demand (DOD) inkjet printers.
- The use of Helios′Ink H-DZ01015 semiconductive ink is greatly improving the devices performances by reducing the roughness of the TCE without a negative impact on the electrical conductivity and the transparency. Life time of the devices is also increased.
- The use of Helios′Ink H-DZ01015 provides ETL layer with high performances. In addition, compared to standard ETL, the PCE not retained even with higher thickness.
Features and Benefits
- Easy deposition under atmospheric conditions (temperature and pressure).
- Good optical performances (visible light transmission >90%).
- Non CMR ink.
- Compatible with ITO layer and Ag NWs layer.
- Compatible with most flexible substrates.
- Low drying temperature making printing onto flexible substrates possible.
Preparation Note
- Can be homogenized for 5 minutes in an ultrasonic bath in order to get rid of any aggregates.
- Filtration on a 0.45 μm PTFE filter syringe to avoid any nozzles clogging.
- Drying conditions: Oven, IR oven, vacuum oven.
- Clean-up solution: Ethanol/Acetone.
Legal Information
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Danger
Hazard Classifications
Acute Tox. 4 Oral - Aquatic Chronic 3 - Eye Dam. 1 - Flam. Liq. 3 - Skin Irrit. 2
Storage Class
3 - Flammable liquids
wgk_germany
WGK 1
flash_point_f
111.2 °F - closed cup
flash_point_c
44 °C - closed cup
Certificates of Analysis (COA)
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Articles
Professor Tokito and Professor Takeda share their new materials, device architecture design principles, and performance optimization protocols for printed and solution-processed, low-cost, highly flexible, organic electronic devices.
Our team of scientists has experience in all areas of research including Life Science, Material Science, Chemical Synthesis, Chromatography, Analytical and many others.
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