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Home > Inorganic Chemistry > Oxides and Peroxides (Find 19 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.

Thiourea dioxide

(1758-73-2)
Used as a smelting metal chromium, chromium carbide, polishing paste and paint pigments, also used as a colorant for enamel, glass, ceramics and a catalyst for organic synthesis; used as a catalyst and analytical reagent; can be used for the coloring of ceramics and enamel, and the coloring of rubber , Preparation of high temperature resistant coatings, paints for art, for preparing inks for printing banknotes and securities. The color of chromium oxide green is similar to that of plant chloroph

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Triiron tetraoxide

(1317-61-9)
Pigment in paints, linoleum, ceramic glazes; in coloring glass; as a polishing compound; in the textile industry; in cathodes; as catalyst.

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Tin oxide (SnO2)

(18282-10-5)
Polishing glass and metals; manufacture of milk-colored, ruby and alabaster glass, enamels, pottery, putty; mordant in printing and dyeing fabrics; in fingernail polishes.

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Tungsten oxide (WO3)

(1314-35-8)
WO₃ has diverse industrial applications due to its unique properties. It serves as a precursor in producing tungsten metal and various tungsten-containing compounds. In the realm of materials science, tungsten trioxide is integral to electrochromic devices, such as smart windows, where it enables the modulation of light transmission through reversible color changes when subjected to an electric field. Additionally, WO₃ is employed in gas sensors for detecting substances like ozone, owing to its semiconducting nature and responsiveness to gas adsorption. Its catalytic properties are harnessed in selective catalytic reduction (SCR) processes within coal-fired power plants, facilitating the conversion of nitrogen oxides into nitrogen and water, with tungsten oxide enhancing the physical strength and longevity of the catalyst. Furthermore, tungsten trioxide finds use in ceramic glazes, imparting a rich yellow hue, and is explored as a photocatalyst for water splitting applications.

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Tantalum pentoxide

(1314-61-0)
Tantalum pentoxide is used in making high refractive index optical glass; as a dielectric film on tantalum for its use as a capacitor component and rectifier; and for preparing tantalum metal, its carbide, and many other tantalum compounds.

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Tin oxide (SnO)

(21651-19-4)
Reducing agent; preparation of stannous salts.

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Thulium Oxide

(39455-81-7)
Activator for fluorescent materials

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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

Frequently Asked Questions

What are Oxides and Peroxides used for in industrial applications?

Oxides and Peroxides serve a wide range of functions across various industries. Metal oxides like zinc oxide and titanium dioxide are commonly used in paints, coatings, sunscreens, and rubber manufacturing. Peroxides, such as hydrogen peroxide and benzoyl peroxide, act as bleaching agents, disinfectants, polymerization initiators, and oxidizing agents in chemical synthesis. Their reactivity and stability make them essential in both large-scale industrial processes and specialized laboratory applications.

Are Oxides and Peroxides hazardous to handle?

Some Oxides and Peroxides can pose health, fire, or environmental hazards if not handled properly. For example, organic peroxides are often thermally unstable and may decompose explosively, while certain metal oxides (e.g., chromium trioxide) are toxic or carcinogenic. Always consult the Safety Data Sheet (SDS), use appropriate personal protective equipment (PPE), and store materials according to compatibility and stability requirements. Proper training and adherence to OSHA or GHS guidelines are essential for safe handling.

What’s the difference between hydrogen peroxide and metal peroxides?

Hydrogen peroxide (H₂O₂) is a liquid oxidizing agent widely used for disinfection, bleaching, and as a green oxidant in chemical reactions. Metal peroxides—such as sodium peroxide (Na₂O₂) or calcium peroxide (CaO₂)—are solid compounds that release oxygen when reacting with water or acids. They are commonly used in oxygen generation, soil remediation, and as catalysts or oxidizers in industrial processes. While both provide oxidative power, their physical forms, reactivity profiles, and applications differ significantly.

How should Oxides and Peroxides be stored to maintain stability and safety?

Proper storage is crucial for maintaining the integrity and safety of Oxides and Peroxides:1. Store peroxides in cool, dry, well-ventilated areas away from heat, light, and incompatible substances (e.g., reducing agents, acids, or flammables).2. Use original or chemically resistant containers; some peroxides require stabilizers or dark bottles to prevent decomposition.3. Metal oxides should be kept sealed to avoid moisture absorption or contamination.4. Regularly inspect containers for signs of degradation, especially for peroxides, which can form explosive crystals over time. Follow manufacturer recommendations and local regulatory requirements.

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