Indium oxide, a transparent, n-type, transparent semiconductor functional materials, has been extensively used in the fields of optoelectronics gas sensors and catalysts.
Indium Oxide In2O3 powder:
Indium oxide
This is an amphoteric oxygen of indium. The molecular formula for it is
In2O3
. It is either a light yellow or white amorphous product, heated to make it reddish brown.
Indium oxide
A new, transparent n-type semiconductor functional material with a width disabled bandwidth, smaller resistivity, and greater catalytic activity. This material has been extensively used in optical field, gas sensors and catalysts. There are also functions such as the indium oxide particle sizes, surface effect and small dimensional effects, as well a macroscopic quantum tunnel effect.
Indium oxide
This is a low-cost, oxidized oxide that has been dissolved in hydrogen. High temperatures are required to separate the low-level oxygen. Additionally, the low-level oxide can be separated at high temperatures by reacting with the metal indium, which is solubilized and acid. The more complicated it becomes, the faster the water absorption disappears. The production of metal indium occurs when hydrogen can be reduced through heating with hydrogen.
Indium oxide
It is not water-soluble, but it can be dissolved in acid. Crystallized oxides however are water insoluble. Two phases of the crystals can be divided: diamond type (corundum) and cubic (diamond). There is a 3eV bandgap in between the phases. You can find the information box that lists the parameters of each cubic phase. Rhombic phases are produced at high temperatures. They are produced by a non-balanced growing method. It is located in the R3C number. Piersson symbol HR30, A= 0.5487 Nm, B= 0.5487 Nm, C= 0.57818 NA nm. Z = 6, The calculation density is 7.31 G/c3.
A magnetic semiconductor is indium mixed with indium film. It has a one-phase crystal structure. The material in the rotating Syringe can be found as Indium mixed indium film.
Films made of indium oxide polycrystalline
Zn doped with Zn has high conductivity (conductivity of 105 S/m), even though it is more superconductive at higher temperatures in helium. The film structure and doping are both factors that influence the superconducting temperature Tc. It is lower than 3.3k.
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Indium Oxide In2O3 Pulp Performance:
Heating to 400 500 in presence of hydrogen, other reducing agents or indium oxide can lead to the formation of metal indium and low-cost Indium oxide.
At high temperatures, it can decompose to lower oxides. At high temperatures, In2O3 can also react with indium metal. While In2O3 from low-temperature combustion is readily soluble in acids, more extensive high-temperature treatments make it more difficult to dissolve and cause hygroscopicity. Indium trioxide can be reduced to hydrogen by red heat. This is how metal indium is created.
Technical Parameters of Indium Oxide Powder In2O3:
ITEM
|
SPECIFICATIONS
|
TEST RESULT
|
Appearance
|
Powder with light yellowish color
|
Powder with light yellowish color
|
In2O3(%,Min)
|
99.99
|
99.995
|
Impurities(%,Max)
|
Cu
|
|
0.8
|
Pb
|
|
2.0
|
Zn
|
|
0.5
|
Cd
|
|
1.0
|
Fe
|
|
3.0
|
Tl
|
|
1.0
|
Sn
|
|
3.0
|
As
|
|
0.3
|
Al
|
|
0.5
|
Mg
|
|
0.5
|
Ti
|
|
1.0
|
Sb
|
|
0.1
|
Co
|
|
0.1
|
K
|
|
0.3
|
Other Index
|
Particle size (D50)
|
|
3-5mm
|
It is simple.
Indium Oxide In2O3 Powder
produced?
1. You can burn the indium metal in the air, or you can calcine it to create In2O,Ino, and In2O3, while the In2O3 pure-purity is obtained by finely controlling your reduction conditions. You can prepare the indium trioxide ceramic paste with a 20nm average size by spray burning.
2. Indium hydroxide can be burned in order to produce indium trioxide. If it's heated too hot, In2O3 may undergo thermal decomposition. However, at a low temperature, complete dehydration will not occur. The oxide produced has an hygroscopic quality. Heater temperature and heat time are critical factors. Because In2O3's melting point is very low, it needs to be maintained in an oxygenating atmosphere.
3. For Indium hydroxide, it is first burned in air at 850 degrees to produce In2O3. Then the indium hydroxide will be heated for 30 minutes at 1000 degrees. Indium sulfate, indium carbonate, as well as other indium substances, can also be burnt in the air for indium trioxide.
Applicaciones
Indium Oxide In2O3 Powder:
Indium oxide has been widely used in the military, high-tech and scientific fields of photovoltaic industry, especially in making transparent electrodes.
It is used for producing a liquid crystal display with an inverter.
It is also used in electronic components, such as spectral purity agents and indium oxide.
The protective coating on a metallic mirror surface is made of indium oxide. Additionally, a photovoltaic LCD semiconductor film is used to create indium salts.
It is an indium oxide raw material that is used in resistance touch screens. This includes fluorescent screens, ceramics, chemical and reagents as well as glass.
Non-ferrous metals glass can be used in ceramics, alkaline Manganese batteries and the Liu series of Indium Oxide. Chemical reagents are also available.
Certain kinds of batteries and thin-film, infrared reflectors (highmirrors) use oxygenides. There are some optical coatings as well as some antistatic coatings that allow for visible light transparency.
The combination of tin and indium dioxide forms indium tinoxid, also known as mix indium oxide (ITO) or a material transparent conductor coating.
Indium oxide, a N-type semiconductor for the resistance element can be used in semiconductors.
Indium oxide can be used in certain dyeing formulas for histological research.
Indium Oxide In2O3 powder Storage:
Indium Oxide In2O3 powder should be kept in a dry, cool, and sealed environment.
Shipping and Packing of Indium Oxide Powder In2O3:
You can pack it in two plastic bags with the inside.
Packing of indium oxide In2O3 powder, vacuum packaging, 100g to 500g or 1kg/bag at 25kg/barrel. Or as requested.
Shipping of Indium Oxide in2O3 Powder: can be shipped by sea, air or express, once the payment has been received.
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