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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.

Molybdenum oxide (MoO3)

(1313-27-5)
Used as a reducing agent for phosphorus pentoxide, arsenic trioxide, hydrogen peroxide, phenols and alcohols, also used in the manufacture of molybdenum salts and molybdenum alloys; used as raw materials for the preparation of metal molybdenum and molybdenum compounds. Used as a catalyst in the petroleum industry. It can also be used for enamel glaze pigments and medicines. Metallurgical industry is used as raw material for powder metallurgy, making various molybdenum metal materials, and as raw

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Silica hydrate (1:?)

(10279-57-9)
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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Lead oxide (Pb3O4)

(1314-41-6)
Plasters and ointments; manufacture of colorless glass; glaze for faience; flux for porcelain painting, protective paint for iron and steel; oil-color for ship paints, varnishes; coloring rubber; cement for glass, gas and steam pipes; storage batteries; pencils for writing on glass; manufacture of lead peroxide, matches.

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Glycinamide

(598-41-4)
Organic synthesis intermediates, feed additives, food additives and raw materials for α-amino acids.

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Potassium oxide

(12136-45-7)
Potassium Oxide, a seemingly simple chemical, is essential for potassium oxide in a variety of fields, including agriculture, chemicals and manufacturing. Its wide range of applications, not only because of its unique chemical properties, but also because it can bring significant benefits and improvements to all walks of life. In agriculture, Potassium Oxide is known as the ""nutritional gold of plants."" As an important component of fertilizer, it is rich in potassium, which is essential for plant growth. Potassium is essential for the growth of plants, it can not only promote plant photosynthesis, enhance plant resistance (such as drought resistance, cold resistance, disease resistance, etc.), but also improve crop yield and quality. Specifically, potassium can increase the fruit size of crops, improve the color and taste of fruits, and make produce fuller and more attractive. Therefore, reasonable application of Potassium Oxide fertilizer in agricultural production is an important means to improve crop yield and agricultural product quality. According to relevant studies, reasonable application of Potassium Oxide fertilizer can increase the yield of crops by 10% to 20% and reduce the incidence of pests and diseases. This data fully proves the important position of Potassium Oxide in agricultural production. In addition, with the continuous development of modern agriculture, more and more farmers began to pay attention to scientific fertilization, and Potassium Oxide fertilizer received more extensive attention and application. In the industrial sector, Potassium Oxide also plays a pivotal role. Potassium Oxide is used as an important additive in the production of glass and ceramics. It can improve the physical properties of glass and ceramics, such as improving the transparency, hardness, heat resistance and so on. These performance improvements make glass and ceramic products more in line with the needs of modern industry, widely used in construction, home, electronics and other fields. In addition, Potassium Oxide can also be used as a catalyst and raw material for chemical synthesis. In chemical reactions, it can reduce the activation energy of the reaction, accelerate the reaction rate, and improve the selectivity and yield of the reaction. Therefore, Potassium Oxide is regarded as an important chemical raw material and catalyst in the chemical industry. It is worth noting that with the continuous development of science and technology, the application field of Potassium Oxide is still expanding. For example, Potassium Oxide is used in the preparation of high-performance lithium-ion batteries in the new energy sector; In the field of environmental protection, Potassium Oxide is used to treat harmful substances such as heavy metal ions in industrial wastewater. The emergence of these new application fields not only brings new development opportunities for Potassium Oxide industry, but also makes an important contribution to the sustainable development of social economy.

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Lead oxide (PbO)

(1317-36-8)
In ointments, plasters; preparing solution of lead subacetate.Glazing pottery; glass flux for painting on porcelain and glass; lead glass; varnishes; with glycerol as metal cement; producing iridescent colors on brass and bronze; coloring sulfur-containing substances, e.g., hair, nails, wool, horn; manufacture of artificial tortoise shell and horn; pigment for rubber; manufacture of boiled linseed oil; in assay of gold and silver ores.

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Manganese oxide (MnO)

(1344-43-0)
Used as raw material for ferrite production, desiccant for paint and varnish, catalyst for amyl alcohol production, feed auxiliary, trace element fertilizer, etc. It is also used in medicine, smelting, welding, textile reduction printing and dyeing, glass coloring, grease bleaching, ceramic kiln industry and dry battery manufacturing.

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Nickel oxide (Ni2O3)

(1314-06-3)
Used in the production of storage batteries, nickel powder, electronic components and used as pigments for ceramics, glass, enamel, etc.; used as coloring pigments for ceramics, glass, and enamel. It is also used in the manufacture of nickel powder and the research of magnetic materials. Used as a pigment for ceramics and glass.

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Iron oxide (Fe3O4)

(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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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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