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Home > Inorganic Chemistry > Oxides and Peroxides (Find 183 items)
Copper oxide and hydrogen peroxide are important in industrial applications. Also, glucose oxide and peroxide have their application in biochemical applications to foster growth in chemical production and guarantee quality output across related industries. Learn the details of oxides and peroxides including CAS No., properties and information on materials and products of suppliers on ECHEMI.

Cupric phosphate

(7798-23-4)
Analysis, fungicide, catalyst, oxidation inhibitor for metals.

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Tellurium oxide (TeO3)

(13451-18-8)
Tellurium Oxide (TeO₃) is an important compound that plays a key role in several fields. First, it has an irreplaceable role in the production of tellurium-containing glass and ceramics. By adding TeO₃ to these materials, their optical properties can be significantly improved, such as increasing transparency and refractive index, thus making it widely used in optical instruments and precision equipment. At the same time, TeO₃ also enhances the thermal stability of the material, making it maintain good performance in high temperature environments, which is particularly important for aerospace and military applications. In addition to its applications in glass and ceramics, TeO₃ also plays an important role in the semiconductor industry. It is used as a dopant, and by incorporating specific semiconductor materials, the electrical properties of the material can be adjusted to create high-performance electronic devices. This doping technology is essential for improving the efficiency and reliability of semiconductor devices, helping to drive advances in electronics. In addition, TeO₃ also shows its unique value in the production of catalysts. It can be used as a catalyst for certain chemical reactions, accelerate the reaction process, improve the reaction efficiency, while maintaining good selectivity, which is particularly important for the production of fine chemicals in the chemical industry. By using TeO₃ as a catalyst, a more environmentally friendly and economical production process can be achieved. In the field of scientific research, TeO₃ also has important application value. It is used to study the properties of tellurium and its compounds, helping scientists better understand the structure and function of these materials. This is of great significance for the development of new materials and technologies, especially in the field of advanced materials science and technology. The unique properties of Tellurium Oxide (TeO₃) make it an integral part of the field of advanced materials science and technology. Whether it is to improve the optical performance and thermal stability, or as a dopant and catalyst, and the application in scientific research, TeO₃ has shown its wide application prospects and important research value.

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LITHIUM-6 HYDROXIDE MONOHYDRATE

(76576-67-5)
Used for making lithium salt and lithium base grease, electrolyte of alkaline storage battery, absorption liquid of lithium bromide refrigerator, etc.

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Ruthenium tetroxide

(20427-56-9)
Oxidizing agent similar to osmium tetroxide, but more difficult to handle.The solvents normally employed in OsO4 oxidations (ether, benzene, pyridine) cannot be used because of their violent reaction with RuO4.Only CCl4 is recommended:Djerassi, Engle, J. Am. Chem. Soc. 75, 3838 (1953).

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Yttrium zirconium oxide

(64417-98-7)
-150, +325 mesh with 99% purity; powder(s) [STR93] [CER91]

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Oxides are compounds (of course they must be pure). Its composition contains only two elements, one of which must be oxygen, the other if it is a metal element, it is called a metal oxide; if the other is not a metal element, it is called a non-metal oxide. Peroxide refers to a compound containing peroxy-O-O-. It can be regarded as a derivative of hydrogen peroxide, which contains peroxide ions in its molecules. Peroxides are divided into inorganic peroxides and organic peroxides.

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Oxides and peroxides are essential commodities in the chemical and industrial sectors owing to their characteristics and high reactivity. For instance, copper oxide and hydrogen peroxide are known to be used in oxidation reactions as well as in catalytic processes in industries.

The difference between oxide and peroxide is that oxides have one oxygen atom while peroxides have two oxygen atoms bonded to a metal or non-metal. Some examples are glucose oxide and peroxide which are useful in biosynthesis in, the food and medicine industry.

Applications of oxides and peroxides include:

● Catalysts in the synthesis of chemicals

● Energy storage in batteries

● Biochemical reactions and enzyme biosynthesis

● Sanitizing agents and detergents

● Semiconductor and electronics manufacturing

● Food production and medicine production industries

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