901065
Aluminum-doped zinc oxide ink for inkjet printing
Sinónimos:
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)
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 - STOT SE 3
target_organs
Central nervous system, Respiratory system
Storage Class
3 - Flammable liquids
wgk_germany
WGK 1
flash_point_f
111.2 °F - closed cup
flash_point_c
44 °C - closed cup
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Artículos
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
Professors Tokito and Takeda share design principles and optimization protocols for organic electronic devices, focusing on flexibility and low cost.
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