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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

LUTETIUM CHLORIDE HEXAHYDRATE

CAS No: 15230-79-2

Formula: Cl3H12LuO6

Categories: Inorganic Chemistry > Skin Protecting

Lutetium Chloride is applied in making laser crystal, and also have specialized uses in ceramics, glass, phosphors, lasers. Stable Lutetium can be used as catalysts in petroleum cracking in refineries and can also be used in alkylation, hydrogenation, and polymerization applications.More

Cadmium telluride

CAS No: 1306-25-8

Formula: CdTe

Categories: Inorganic Chemistry > Free Radicals

Brownish-black, cubic crystals.Oxidizes on prolonged expo- sure to moist air. Insoluble in water and mineral acids except nitric, in which it is soluble with decomposition.More

Cobalt dibromide

CAS No: 7789-43-7

Formula: Br2Co

Categories: Inorganic Chemistry > Inorganic Salts

Reddish violet crystalline powder The green anhydrous salt is prepared by dehydration of the red hexahydrate or by the action of bromine on heated cobalt. It is very soluble in water and soluble in many polar organic solvents; it deliquesces in moist air to a red solution. The hexahydrate crystallizes from aqueous solution at room temperature; it melts at 100°, evolving water and forming the purple dihydrate.More

Glutaronitrile

CAS No: 544-13-8

Formula: C5H6N2

Categories: Inorganic Chemistry > Inorganic Acid

Clear colorless to yellow liquidMore

VANADIUM(IV) OXIDE

CAS No: 12036-21-4

Formula: O2V

Categories: Inorganic Chemistry > Oxides and Peroxides

CBIMore

LITHIUM BROMIDE HYDRATE

CAS No: 23303-71-1

Formula: BrH2LiO

Categories: Inorganic Chemistry > Inorganic Salts

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Erbium fluoride

CAS No: 13760-83-3

Formula: ErF3

Categories: Inorganic Chemistry > Inorganic Salts

Erbium Fluoride, High purity Erbium Fluoride is applied as dopant in making optical fibre and amplifier. Erbium-doped optical silica-glass fibers are the active element in erbium-doped fiber amplifiers (EDFAs), which are widely used in optical communications. The same fibers can be used to create fiber lasers, In order to work efficiently, Erbium-doped fiber is usually co-doped with glass modifiers/homogenizers, often aluminum or phosphors.More

6-CARBOXYTETRAMETHYLRHODAMINE N-HYDROXYSUCCINIMIDE ESTER

CAS No: 150810-68-7

Formula: C29H25N3O7

Categories: Inorganic Chemistry > Inorganic Salts

5-TAMRA-SE is an amine-reactive fluorescent agent, its conjugates yield bright, pH-insensitive orange-red fluorescence (approximate excitation/emission maxima ~546/579) with good photostability. More

Indium phosphide

CAS No: 22398-80-7

Formula: InP

Categories: Inorganic Chemistry > Phosphines

black crystal(s); 6mm pieces and smaller with 99.999% purity; semiconductor; band gap, eV, 1.42 (0K) and 1.35 (300K); mobility (300K), cm2/(V·s), 4600 electrons and 150 holes; dielectric constant 12.4; effective mass 0.077 electrons and 0.64 holes [KIR82] [CER91] [STR93]More

MAGNESIUM THIOSULFATE HEXAHYDRATE

CAS No: 13446-30-5

Formula: Mg1O3S2

Categories: Inorganic Chemistry > Inorganic Salts

Industrially used as a dechlorinating agent and printing and dyeing aid for cotton fabric bleaching, as a detergent, disinfectant and chemical reagent in medicine, but also for electroplating, leather, organic chemical products, and extraction of copper and nickel from ore .More

Phosphorus nitride (P3N5)

CAS No: 12136-91-3

Formula: N.P

Categories: Inorganic Chemistry > Inorganic Salts

Phosphorus nitride, a shining star in the vast universe of inorganic chemistry, has always attracted scientists' attention with its unique chemical properties and vast application potential. Its chemical identity is identified by CAS number 12136-91-3, molecular formula N5P3, and is often active in academic literature under the pseudonyms phosphorus nitride, phosphorus nitride, or triphosphorus pentanitride (691849-38-4). In the vast field of inorganic chemistry, phosphorus nitride is defined as an inorganic salt, a kingdom of compounds built by the wonderful dance of ionic bonds between cations and anions. The birth of phosphorus nitride stems from the exquisite covalent bond between nitrogen and phosphorus atoms. This structure resembles a complex crystal network woven together, with nitrogen and phosphorus atoms alternating in arrangement, forming a unique atomic scroll. This unique arrangement gives phosphorus nitride unparalleled reactivity in chemical reactions. Its internal nitrogen-nitrogen and phosphorus-phosphorus bond energies are relatively low due to the similarity in the electronegativity of nitrogen and phosphorus, like tightly stretched strings, a slight touch can trigger a symphony of chemical reactions. The sensitivity of this chemical reaction makes phosphorus nitride show great potential in the field of energy conversion and storage. Under specific environmental and conditions, phosphorus nitride can decompose, much like ignited gunpowder, releasing nitrogen and phosphorus. This process holds the potential for energy conversion, opening up new research directions for energy science. For example, scientists are exploring the possibility of utilizing this property in high-efficiency batteries, solar energy storage, and other cutting-edge technologies to address the challenges of the current energy crisis. However, the chemical properties of phosphorus nitride are complex and variable, and the path to fully realizing its potential is not without obstacles. How to precisely control its decomposition reaction, avoid side reactions, and optimize its stability and efficiency in practical applications are key challenges that future research needs to overcome. Despite the many challenges, the scientific treasure of potential world-changing possibilities hidden under the mysterious veil of phosphorus nitride is waiting to be discovered and utilized.More

Antimony pentafluoride

CAS No: 7783-70-2

Formula: F5Sb

Categories: Inorganic Chemistry > Inorganic Salts

colourless oily liquid Antimony pentafluoride is a noncombustible, oily, colorless liquid with a pungent odor.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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