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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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Finding reliable inorganic chemical suppliers is crucial for industries requiring precise grades and consistent quality. On ECHEMI, you can connect with 580 verified manufacturers and 333 distributors, covering metals, salts, minerals, and specialty inorganics. Whether for laboratory use or industrial production, our platform helps you source chemicals that meet your exact specifications and ensures efficient procurement.
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2537 Inorganic Chemistry items

Ammonium lactate

CAS No: 515-98-0

Formula: C3H6O3.H3N

Categories: Inorganic Chemistry > Skin Conditioning

Used as feed additives widely used in food, beverages, dairy products, salt, nutrient solution, medicine, etc.More

Disodium hydrogen phosphate dodecahydrate

CAS No: 10039-32-4

Formula: H3O4P.12H2O.2Na

Categories: Inorganic Chemistry > Phosphorus Compounds

The analysis was used as a buffer, Leptospira culture medium was prepared, and potassium was determined. As a quality improver, it has the functions of increasing the complex metal ions, pH value, and increasing ionic strength of food, thereby improving the binding force and water holding capacity of food. my country stipulates that it can be used for condensed milk, with a maximum use amount of 0.5g/kg; it can also be used for compound baking powder, and use it in an appropriate amount accordiMore

Ammonium hexafluorotitanate

CAS No: 16962-40-6

Formula: F6Ti.2H4N

Categories: Inorganic Chemistry > Inorganic Salts

For experimental use, ceramic industry.More

Titanium oxide (Ti3O5)

CAS No: 12065-65-5

Formula: O.Ti

Categories: Inorganic Chemistry > Biocide & Algicide

For optical coatingsMore

Tungsten hydroxide oxide phosphate

CAS No: 12067-99-1

Categories: Inorganic Chemistry > Inorganic Acid

As reagent for alkaloids and many other nitrogen bases, for phenols, albumin, peptone, amino acids, uric acid, urea, blood, carbohydrates; as biological stain. Used as biochemical reagent and chromatographic analysis reagentMore

Sulfurous acid

CAS No: 7782-99-2

Formula: H2O3S

Categories: Inorganic Chemistry > Inorganic Acid

colourless liquid SULFUROUS ACID, colorless liquid, prepared by dissolving SO2 in H2O. Reagent grade H2SO3 contains approximately 6% SO2 in solutionMore

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Potassium cyanate

CAS No: 590-28-3

Formula: CHNO.K

Categories: Inorganic Chemistry > Hair Conditioning

Potassium Cyanate, chemical formula KOCN, is an inorganic compound belonging to the cyanate family. This compound, composed of potassium ions (K +) and cyanate ions (OCN⁻), usually exists in the form of colorless crystals and exhibits an extremely high water solubility. Potassium cyanate has significant research value and practical application potential in the field of chemical synthesis and industrial application. As a strongly polar compound, potassium cyanate has a very high solubility in water, which makes it an important application in many chemical reactions. The cyanate ion (OCN⁻) has a strong nucleophilicity, which enables potassium cyanate to participate in a variety of reactions in organic synthesis, thus playing a key role in the synthesis of amino acids and other organic compounds. Potassium cyanate is relatively stable at high temperatures, but decomposition reactions may occur under certain conditions, so special attention is needed when using it. Potassium cyanate is commonly used as an important chemical reagent in laboratory and industrial production. Due to its unique chemical properties, potassium cyanate is also widely used in agriculture and the chemical industry. For example, it can be used as a raw material or intermediate for certain pesticides, as well as play a role in the production of dyes and pigments. However, it is important to note that the cyanide structure in potassium cyanate is somewhat toxic, so extra care needs to be taken when handling and using it, ensuring that appropriate safety measures are taken to prevent potential health risks.More

1,3,5-Triazine-2,4,6-triamine, phosphate (1:1)

CAS No: 20208-95-1

Formula: C3H6N6.H3O4P

Categories: Inorganic Chemistry > Inorganic Salts

OtherSolidMore

Sodium iodide

CAS No: 7681-82-5

Formula: INa

Categories: Inorganic Chemistry > Antimicrobials

It is colorless cubic crystal or white crystalline powder. It is odorless with salty taste bitter. It is easily soluble in water, soluble in methanol, ethanol, acetone, glycerol, liquid ammonia and liquid sulfur dioxide. The aqueous solution was slightly alkaline. White or almost white, crystalline powder or colourless crystals, hygroscopic. Sodium iodide, white solid, soluble, formed by reaction of sodium carbonate or hydroxide and hydriodic acid, and then evaporating. Used in photography, inMore

Lutetium oxide (Lu2O3)

CAS No: 12032-20-1

Formula: Lu2O3

Categories: Inorganic Chemistry > Inorganic Salts

Lutetium Oxide, also called Lutecia, is the important raw materials for laser crystals, and also have specialized uses in ceramics, glass, phosphors, lasers. Lutetium Oxide also be used as catalysts in cracking, alkylation, hydrogenation, and polymerization. Stable Lutetium can be used as catalysts in petroleum cracking in refineries and can also be used in alkylation, hydrogenation, and polymerization applications.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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