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Home > Inorganic Chemistry
Inorganic chemistry focuses on studying and explaining the properties and reactions of all elements and inorganic compounds, excluding hydrocarbons and their derivatives. It encompasses the exploration, both experimentally and theoretically, of inorganic molecules and compounds. The inorganic chemistry covers inorganic compounds such as salts, metals, minerals, and coordination complexes.

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2542 Inorganic Chemistry items

INDIUM NITRATE

CAS No: 207398-97-8

Formula: InN3O9

Categories: Inorganic Chemistry > Inorganic Salts

Used for electroplating indium. Used as an oxidant.More

Zirconium carbide

CAS No: 12070-14-3

Formula: CZr

Categories: Inorganic Chemistry > Inorganic Salts

Used as incandescent filament. Now it is mainly used as abrasive. It can also be used as a raw material for cemented carbide.More

Ammonium metatungstate

CAS No: 12028-48-7

Formula: H4N.1/6H2O40W12

Categories: Inorganic Chemistry > Oxides and Peroxides

It is used to produce tungsten catalyst, which is widely used in petroleum hydrocracking, lubricating oil hydrogenation, desulfurization, denitrification; also used for surface coating of various metal products, cemented carbide, etc.More

Silver sulfide (Ag2S)

CAS No: 21548-73-2

Formula: Ag2S

Categories: Inorganic Chemistry > Inorganic Salts

Silver sulfid is an inorganic compound with the chemical formula Ag2S and a gray-black powder appearance. The density of silver sulfid is 6.85-7.23 g/cm3, the melting point is 825℃, and it decomposes at the boiling point. It is insoluble in water, soluble in concentrated sulfuric acid and nitric acid, and soluble in potassium cyanide and sodium cyanide solutions.More

Strontium bromide (SrBr2)

CAS No: 10476-81-0

Formula: Br2Sr

Categories: Inorganic Chemistry > Inorganic Salts

Also has some pharmaceutical usesMore

Triiodostibine

CAS No: 7790-44-5

Formula: I3Sb

Categories: Inorganic Chemistry > Inorganic Salts

light brown powderMore

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Manganese oxide (Mn2O3)

CAS No: 1317-34-6

Formula: Mn2O3

Categories: Inorganic Chemistry > Inorganic Salts

Manganese Oxide, also known by its chemical formula Mn₂O₃, is a solid substance that typically appears in colors ranging from black to brown. This compound is widely recognized for its significant presence in various industrial applications. Due to its unique properties, it is utilized in the manufacturing of ceramics, glass, and as a catalyst in chemical processes. Additionally, it plays a crucial role in the production of dry cell batteries and as a pigment in certain paints and varnishes. The versatility of Manganese Oxide makes it an indispensable component in several manufacturing sectors, contributing to technological advancements and industrial growth.More

Manganese dihydrogen phosphate

CAS No: 18718-07-5

Formula: H3O4P.1/2Mn

Categories: Inorganic Chemistry > Inorganic Salts

It is used for the phosphating treatment of steel products, especially large-scale mechanical equipment, as a phosphating agent, which can play a rust prevention effect. Used as a lubricating layer and protective layer for various weapons in the defense industry. Phosphor sensitizer.More

Potassium pyrosulfate

CAS No: 7790-62-7

Formula: H2O7S2.2K

Categories: Inorganic Chemistry > Inorganic Salts

Colorless needles or white, crystalline powder or fused pieces. Soluble in water ( converted to potassium bisulfate). More

Gold hydroxide (Au(OH)3)

CAS No: 1303-52-2

Formula: AuH3O3

Categories: Inorganic Chemistry > Inorganic Bases

In gold-plating solutions; for decorating porcelains.More

Holmium fluoride

CAS No: 13760-78-6

Formula: F3Ho

Categories: Inorganic Chemistry > Inorganic Salts

Holmium Fluoride has specialized uses in ceramics, glass, phosphors and metal halide lamp, and dopant to garnet laser. Holmium lasers are used in medical, dental, and fiber-optical applications.More

Lead sulfate (PbSO4)

CAS No: 7446-14-2

Formula: H2O4S.Pb

Categories: Inorganic Chemistry > Inorganic Salts

Lead sulfide (PbSO4), also known as lead sulfate, is a denser white crystalline powder. This substance exists in the form of white crystals and has the characteristic of being in a solid state. It does not react with water, so it will settle in water. If a person comes into contact with lead sulfate, it may cause irritation to the skin, eyes, and mucous membranes. Ingestion, inhalation, or skin absorption of this substance may result in mild toxic reactions. Lead sulfate is primarily used to produce other types of chemicals. In practical applications, it has a wide range of uses, such as serving as a light-sensitive material in photolithography, enhancing the texture and hardness of fabrics in the treatment of battery acid solutions, and serving as a component of paint to provide a protective layer. In different physical states, lead sulfide can appear as wet solids or dry powders, depending on its preparation method and storage conditions. In addition to wet solids and dry powders, it can also exist in other solid forms. Whether wet solids or dry powders, lead sulfide is insoluble in water and will settle in water. The chemical formula for lead sulfide is H2O4S.Pb, and it is classified as an inorganic salt in the field of inorganic chemistry. Its CAS number is 7446-14-2, which is a globally recognized chemical substance registration number used to track and manage chemicals. The preparation method and storage conditions of lead sulfate have a significant impact on its physical state. In practical applications, strict control is needed over the use of lead sulfate to prevent adverse effects on human health and the environment. The research and application of lead sulfate are of great significance in the field of chemistry and can help drive the development of related industries. As an important chemical, lead sulfate must be produced in accordance with relevant safety regulations to ensure the health and safety of workers. At the same time, attention must be paid to environmental protection when using lead sulfate, to reduce its impact on the environment. In the future, as scientific and technological progress continues, people's understanding and application of lead sulfate is expected to become more in-depth, with the hope of discovering more of its application value in various fields.More

Bismuth triiodide

CAS No: 7787-64-6

Formula: BiI3

Categories: Inorganic Chemistry > Inorganic Salts

White to yellowish white crystalline powderMore

Lithium bromide (LiBr), hydrate

CAS No: 85017-82-9

Formula: BrLi.xH2O

Categories: Inorganic Chemistry > Inorganic Salts

solidMore

Sodium perborate (NaBO3) tetrahydrate

CAS No: 10486-00-7

Formula: BHO3.4H2O.Na

Categories: Inorganic Chemistry > Inorganic Salts

Sodium perborate (NaBO3) tetrahydrate is a white, odorless compound that is crystalline in powder form with a melting point of 60 °C and a density of 1.73. It is odorless, highly hygroscopic, and soluble in water. It is produced by the reaction of sodium metaborate with hydrogen peroxide to form hydrated sodium perborate. This chemical is a hydrated sodium salt that has antiseptic, cleaning and deodorizing properties. It is used as an oxidant in organic synthesis and participates in various oxidation reactions of aniline and sulfide. Sodium perborate (NaBO3) tetrahydrate is stable and incompatible with heavy metal salts, strong reducing agents, strong acids and organic materials. The upstream raw materials of sodium perborate (NaBO3) tetrahydrate are solid sodium hydroxide, sodium metaborate, magnesium silicate.More

Frequently Asked Questions

Why is inorganic chemistry important in industry?

Inorganic chemistry is fundamental to multiple industries. It supports the development of catalysts, pigments, coatings, fertilizers, batteries, ceramics, and pharmaceutical intermediates. Understanding inorganic reactions and properties allows industries to improve product performance, increase efficiency, and develop innovative solutions for modern technology and sustainable processes.

What is the difference between inorganic and organic chemistry?

The main difference lies in the type of compounds studied:

Organic chemistry focuses on carbon-containing compounds, including hydrocarbons and their derivatives, studying their structure, reactivity, synthesis, and applications.

Inorganic chemistry focuses on compounds not primarily based on carbon-hydrogen bonds, including metals, salts, minerals, and nonmetal compounds, exploring their properties, reactions, and industrial applications.

Both branches overlap in areas like organometallics and coordination chemistry, but their core scope differs.

What substances are inorganic?

Inorganic substances are those that generally lack C-H bonds. Examples include salts such as sodium chloride and potassium nitrate; metals like iron, copper, and aluminum; minerals and oxides such as quartz, diamond, and titanium dioxide; and other compounds including inorganic phosphates, sulfates, and nitrates. Inorganic compounds are widely used in chemical manufacturing, catalysis, materials, electronics, water treatment, and environmental applications.

What is inorganic chemistry?

Inorganic chemistry is the branch of chemistry that studies compounds and elements that generally do not contain carbon-hydrogen (C-H) bonds. It focuses on the properties, structures, reactions, and applications of inorganic substances, which include metals, salts, minerals, oxides, acids, bases, and coordination compounds. Inorganic chemistry plays a key role in industries such as materials science, catalysis, energy storage, pharmaceuticals, and environmental chemistry.

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