Copper oxide (CuO) can act as a p-type semiconductor when used in electronic devices.
In semiconductors, the electrical conductivity can be controlled by introducing impurities or dopants into the material. When a p-type dopant is introduced into a semiconductor, it creates "holes" in the material, which can move through the crystal lattice and conduct electricity.
Copper oxide is an example of a p-type semiconductor because it has an excess of positively charged "holes" due to the presence of copper vacancies. These positively charged holes can move through the crystal lattice and conduct electricity. The copper oxide can be used as a p-type semiconductor in a variety of electronic devices, such as solar cells, transistors, and diodes.
It is important to note that the properties of a semiconductor, including copper oxide, can be further tuned by adjusting the impurity concentration, temperature, and other factors. Additionally, the choice of semiconductor material depends on the specific application and the desired electrical and physical properties required.
1.Copper oxide is used as a pigment in ceramics to produce blue, red, and green, and sometimes gray, pink, or black glazes;
2.Copper oxide as supplementary source of copper in process of PCB or Semiconductor
3.Ceramic color mixing;
4. Wood Preservation
5. Firecrackers raw materials
6.Electroplating
Item | Specification | |
Appearance | Black powder | |
Copper oxide | 99.3% Min. | |
Zn | 30 ppm. Max. | |
Fe | 30 ppm. Max. | |
Pb | 5 ppm. Max. | |
Ni | 10ppm Max. | |
Chloride | 15ppm Max. | |
Dissolving speed(sec) | 30 seconds Max. | |
Insoluble in Acid | 0.003% Max. |
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