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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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2537 Inorganic Chemistry items

Cerium silicide (CeSi2)

CAS No: 12014-85-6

Formula: CeSi2

Categories: Inorganic Chemistry > Inorganic Salts

Cadmium phosphide (Cd3P2)

CAS No: 12014-28-7

Formula: Cd.P

Categories: Inorganic Chemistry > Phosphines

Zinc iodate

CAS No: 7790-37-6

Formula: HIO3.1/2Zn

Categories: Inorganic Chemistry > Inorganic Salts

white, crystal(s) powder(s) [MER06]More

Manganese fluoride (MnF3)

CAS No: 7783-53-1

Formula: F3Mn

Categories: Inorganic Chemistry > Inorganic Salts

Manganese fluoride is a kind of inorganic compound, red crystal, density 3.54g/cm3, molar mass 111.938 g/ mole, dissolved in a small amount of water, in a large amount of water or heating, to obtain basic manganese fluoride, toxic. It is a strong fluorinator that reacts with sulfur, boron, silicon, carbon, phosphorus trichloride and carbon tetrachloride when heated.More

Telluric acid (H2TeO4), ammonium salt (1:2)

CAS No: 13453-06-0

Formula: H3N.1/2H2O4Te

Categories: Inorganic Chemistry > Inorganic Salts

Telluric Acid (H2TeO4), Ammonium Salt (1:2), chemical formula (NH4)3Bi2TeO9, is an inorganic compound, it is formed by the reaction of bismuth acid (H2TeO4) with ammonia (NH3) salt substance. This compound is usually in the form of a white solid, which is not common in nature, and is a special chemical. Telluric Acid (H2TeO4), Ammonium Salt (1:2) has a certain chemical activity, which means that it can show unique properties and effects in different chemical reactions. Because of their unique chemical structure and properties, Telluric Acid (H2TeO4), Ammonium Salt (1:2) may be used in some specific industrial applications and chemical research areas, such as in the preparation of certain catalysts or as reagents in analytical chemistry. However, due to their relatively rare nature, the use and research of Telluric Acid (H2TeO4), Ammonium Salt (1:2) has been limited compared to other more common compounds.More

Strontium phosphate (Sr3(PO4)2)

CAS No: 7446-28-8

Formula: H3O4P.3/2Sr

Categories: Inorganic Chemistry > Phosphorus Compounds

Strontium phosphate, with CAS number 7446-28-8, is a compound with a unique chemical formula, H3O4P.3/2Sr. From this chemical formula, we can see that it is another expression of the combination of phosphoric acid and strontium salt in a 2:3 ratio. Therefore, it is also known as strontium phosphate (Sr3(PO4)2), diphosphate tri-strontium, trisodium phosphate, or simply as strontium phosphate. In addition, it has two widely used CAS numbers, 8478-70-28-4 and 116-3782-52-2. As an inorganic phosphorus compound in chemistry, strontium phosphate has important applications in many fields. Its unique properties and excellent physical and chemical properties make it play an important role in fields such as materials science, medicine, environmental protection, etc. For example, in the field of materials science, strontium phosphate can be used to prepare high-performance composite materials and ceramic materials; in the field of medicine, it can be used to prepare drug carriers and bone repair materials; in the field of environmental protection, it can be used to deal with heavy metal ions and radioactive pollutants in wastewater.More

Phenol, 2-amino-, hydrochloride (1:1)

CAS No: 51-19-4

Formula: C6H7NO.ClH

Categories: Inorganic Chemistry > Inorganic Salts

Used as dye intermediateMore

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Calcium bisulfite

CAS No: 13780-03-5

Formula: Ca.2H2O3S

Categories: Inorganic Chemistry > Inorganic Salts

As germicide, preservative, and disinfectant; for washing (1:1000) casks in brewing to prevent souring and cloudiness of beer and to prevent secondary fermentation; as antichlor in bleaching fabrics; largely in manufacture of sulfite cellulose from wood for paper-making.More

Tungsten carbide (W2C)

CAS No: 12070-13-2

Formula: CW2

Categories: Inorganic Chemistry > Inorganic Salts

black hexagonal, a=0.29982 nm, c=0.4722nm; can be prepared by heating tungsten and carbon in the presence of hydrogen at high temperatures; hardness approaches that of diamond; brittle; used in hard metals, and as a 99.5% pure sputtering target to produce wear-resistant films and semiconductor films [KIR83] [CIC73] [CER91] [CRC10]Either of two carbides (W2C and WC) produced by heating powdered tungsten with carbon. More

Indium telluride (In2Te3)

CAS No: 1312-45-4

Formula: In.Te

Categories: Inorganic Chemistry > Inorganic Salts

In semiconductor research.More

Hexafluoroantimonic acid

CAS No: 16950-06-4

Formula: F6Sb.H

Categories: Inorganic Chemistry > Inorganic Salts

HF/SbF5 is an excellent medium for preparing alkylene oxide salts.More

Arsenic acid (H3AsO4), ammonium salt (1:1)

CAS No: 13462-93-6

Formula: AsH3O4.H3N

Categories: Inorganic Chemistry > Inorganic Salts

For the pharmaceutical industryMore

Iron yttrium oxide (Fe5Y3O12)

CAS No: 12063-56-8

Formula: Fe.O.Y

Categories: Inorganic Chemistry > Oxides and Peroxides

In microwave tunable filters and limiters.More

Potassium Sodium Silicate

CAS No: 37328-88-4

Formula: KNaO3Si

Categories: Inorganic Chemistry > Inorganic Salts

Used as fluorescent screen phosphor and precision casting adhesive. It is also used as a self-adhesive for coatings in the manufacture of welding electrodes. It is the raw material for producing inorganic paint, vat dye and silicon compound.More

Beryllate(2-), tetrafluoro-, disodium, (T-4)-

CAS No: 13871-27-7

Formula: BeF4.2Na

Categories: Inorganic Chemistry > Inorganic Salts

Dodecanedioic acid, ammonium salt (1:?)

CAS No: 59864-79-8

Formula: C12H22O4.xH3N

Categories: Inorganic Chemistry > Inorganic Salts

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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