ITO can be described as an N-type semiconductor-indium zinc oxide. ITO, an indium Tin Oxide semiconductor transparent conductive film has usually two performance indicators, light transmittance or resistivity.
Particle size 20nm
Purity: 99.9%
More information about Indium Tinoxidide ITO powder:
ITO Indium tin oxide
Oder
Indium doped tin oxide
A ternary combination of different proportions of indium, zinc and oxygen. You can call it a ceramic, or an alloy, depending on the amount of oxygen. Commonly encountered
indium tin oxide
The composition is oxygen-saturated and contains 74% in, 18%O2 and 8% Sn. Because oxygen-saturated compositions tend to be more common than unsaturated, they can also be called oxygen-deficient IOTO. It is translucent and colorless with a bulk that is pale yellow to grey. The thin layer acts almost like a metallic mirror when it is visible in the ultraviolet region.
Indium tin oxide
Because of its high electrical conductivity and transparency as well as the ease at which thin films can be deposited, it is one of most commonly used transparent conductive oxides. Conductivity and transparency must be balanced, as increasing thickness and increasing concentrations of charge carriers can increase conductivity but decrease transparency.
Indium tin oxide films
They are most often deposited onto the surface using physical vapor deposit. It is usually used electron beam or several sputtering methods.
ITO is an oxide mixed of indium and Tin. The melting point of ITO varies according to its composition. It can range from 1526-1926degC. It is composed of ca In4Sn. This is an n type semiconductor that has a wide bandgap, approximately 4 eV. ITO can be seen through and exhibits high electrical conductivity. These characteristics are great for touch screen applications like mobile phones.
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Indium Tin Oride ITO Powder’s Performance
Nano-indium Tin Metal Oxide is very transparent and conductive and can block harmful ultraviolet and infrared radiations. Indium tinoxid is usually used in transparent conductive films to reduce harmful ultraviolet radiation and other infrared radiation.
Sn-doped ITO3 (or oxide conductive) films have the highest transmittance. They also exhibit the greatest conductive properties. Fine patterns can be easily etched in acid solution. The light transmittance of this film is over 90%. ITO has a transmittance of 1:9.
Technical Parameters of Indium Tin Oride ITO Powder
Certificate of ITO Nanoparticles-ppm(In2O3:SnO2=90wt%:10wt%) |
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Purity | Al | Sb | Cd | Cu | Fe | Pb | Ni | Si | Zn | Co | As | P | Ca | Mg | Bi |
99.99% | 1.88 | 3.30 | 1.00 | 2.55 | 3.50 | 9.38 | 1.00 | 5.88 | 2.55 | 0.58 | 1.48 | 0.52 | 1.39 | 2.49 | 9.12 |
It is simple.
Indium Tin Oxide ITO Powder
produced?
It is usually prepared by oxidizing indium and metal-tin to make indium powder, and then dispersing and mixing the indium powder and the tin dioxide powder. As the controlling conditions, metal indium, metal tin and mixing speed are not always synchronized, the ITO powder can be difficult to make. The ITO film’s quality is affected by the large particle sizes of the tin powder. To solve the issue of uniformity in ITO powder, co-precipitation is another method. To dissolve indium and tin metals, this method employs nitric acid. The mixture is then mixed with tin and indium, according to their ratio. Ammonia then serves as co-precipitator. The co-precipitated hydroxide is obtained by precipitation. Finally, the calcination process gives rise to indium oxide.
Applicaciones
Indium Tin Oxide ITO Powder:
ITO, an optoelectronic substance that is widely used in both industry and research, can be described as Indium Tin Oxide (ITO). ITO can also be used in flat panel displays and smart windows. ITO is used to make the glass substrate. This helps reduce energy consumption.
The
ITO green belt
This is used to make fully functional, flexible and electroluminescent lamps. Additionally, it can be used for producing fully functional and adjustable electroluminescent lamps.
ITO film
This film can be used as an antireflective coating in both liquid crystal displays and electroluminescence.
ITO is used commonly to create transparent conductive coats for display (such as OLED and plasma displays, liquid crystal displays, touch panels, electronic ink applications, OLED screens, OLED monitors, OLED displays, OLED displays, OLED displays, OLED displays, OLED displays, OLED displays, OLED displays, OLED displays, or OLED displays), etc. ITO film also serves as an organic light-emitting device, solar cell, antistatic coatings, and shielding. ITO (or hole injection layer) is used in organic light emitting diodes.
ITO coated glass
(
indium tin oxide glass
) is part of the TCO (transparent conduct oxide) category.
ITO glass
It has low resistance to light and good transmission of light.
It is used to remove the ITO film from the windshield. By applying a voltage on the film, heat is created.
ITO coating
ITO is used in many optical coatings. There are many other applications for ITO, including gas sensors and anti-reflective coats. Electrowetting on dielectrics is also possible. Finally, Bragg reflectors to VCSEL Lasers are another use. ITO is used infrared as a reflector to low-emissivity window panes. ITO was first used in the Kodak DCS 520. Later Kodak DCS cameras utilized ITO to increase the blue channel’s response.
ITO thin film strain gages operate at temperatures of up to 1400°C. They can even be used in extremely harsh environments, such as jet engines or gas turbines.
Indium Tin Oxide should always be kept in a dry, cool, and sealed environment. It should not be exposed to air.
Shipping and Packing of ITO Powder indium Tin Oxide:
You can pack it in plastic bags with double seals inside.
Indium Tinoxidide ITO Powder packaging: Vacuum packing 100g, 500g and 1kg/bag. 25kg/barrel. Or as you request.
Indium Tin Oride ITO Powder shipping can be sent by sea or air as soon as the payment is received.
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You can contact us to request high-quality ITO dust. (brad@ihpa.net)
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Other Titles |
ITO powder indium Tin Oxide. In2O3 :SnO2 – 90:10 Wt%, C.A. 71243-84-0. In.O.Sn. In1.69Sn0.15O2.85 |
|
50926-11-9 |
Compound Formula |
In2O5Sn |
Molecular Weight |
428.34 |
Appearance |
From pale yellow to greenish powder |
Melting Point |
1526-1926 degC |
Solubility In Water |
Insoluble |
Density |
7.14 g/m3 |
Purity |
99.90% |
Particle Size |
20nm |
Boling Point |
N/A |
Specific Heat |
N/A |
Thermo Conductivity |
N/A |
Thermal Expansion |
N/A |
Young’s Module |
N/A |
Exact |
429.684524 |
Monoisotopic |
429.684524 |
|
|
Safety Notice |
Alert |
Hazard Statements |
H315-H319-H335 |
Flashing Point |
N/A |
Hazard Codes |
Xi |
Risk Codes |
36/37/38 |
Safety statements |
26 |
RTECS # |
N/A |
Transport Information |
N/A |
Germany |
3 |