Product
Supplier
Encyclopedia
Inquiry
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.

Inorganic Chemicals Suppliers

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.
Explore inorganic chemicals for your specific needs now.
2537 Inorganic Chemistry items

Chromium dichloride

CAS No: 10049-05-5

Formula: Cl2Cr

Categories: Inorganic Chemistry > Inorganic Salts

The vapor-phase co-reductions with other metal halides by hydrogen results in finely divided intermetallics with applications as structural materials or compounds with useful thermoelectric, magnetic, and oxidation-resistance properties.More

Periodic acid (H5IO6)

CAS No: 10450-60-9

Formula: H5IO6

Categories: Inorganic Chemistry > Inorganic Acid

Periodic acid, with its chemical formula H5IO6, is a highly potent oxidizing agent and acidic compound, playing a pivotal role in various chemical processes, particularly in the realm of organic synthesis. As an oxidizing agent, it demonstrates a remarkable ability to selectively oxidize specific organic compounds, a characteristic that makes it indispensable in the field of chemistry. One of its primary applications lies in its use as an oxidation reagent in organic reactions. It can selectively target and oxidize alcohols, aldehydes, and ketones, converting them into corresponding acids, esters, or other derivatives. This selectivity is crucial in organic synthesis, where it allows for precise control over the reaction pathways and the formation of desired products. For instance, the oxidation of an alcohol to an aldehyde can be achieved using periodic acid, enabling the synthesis of complex organic molecules with high precision. Beyond its role in organic synthesis, periodic acid also finds utility in the recycling of screen meshes used in screen printing. In the screen printing process, the meshes can become clogged with accumulated ink and various chemicals. By treating these meshes with periodic acid, a thorough and effective cleaning can be achieved, facilitating the regeneration and reuse of the meshes. This not only enhances the efficiency of the printing process but also extends the lifespan of the meshes, reducing waste and costs. Furthermore, periodic acid serves as an essential tool in analytical chemistry, particularly in oxidative titrations. Its strong oxidizing properties make it suitable for determining the concentration of certain components in samples. By reacting with the analyte in a controlled manner, it allows for the accurate quantification of these components, proving invaluable in quality control and research applications. The versatility of periodic acid is rooted in its unique combination of strong oxidizing and acidic characteristics. Its applications extend beyond the mentioned areas, including roles in metal surface treatments, environmental remediation, and even in the development of advanced materials. The ability of periodic acid to manipulate chemical reactions with precision and efficiency underscores its significant value and wide-ranging utility across multiple scientific disciplines.More

Fluorite (CaF2)

CAS No: 14542-23-5

Formula: CaF2

Categories: Inorganic Chemistry > Inorganic Salts

Zinc cyanide

CAS No: 557-21-1

Formula: C2N2Zn

Categories: Inorganic Chemistry > Inorganic Salts

Colorless crystalline solid or white powder. Slight, bitter almond odor. Sinks in water; insoluble.More

913 Inorganic Chemistry Suppliers

Short on time? Let Inorganic Chemistry sellers contact you.

Gold trichloride

CAS No: 13453-07-1

Formula: AuCl3

Categories: Inorganic Chemistry > Inorganic Salts

Nanocrystalline superlattice in colloidal gold solution has been prepared by AuCl3 induced by ligand and reduced with sodium borohydride.More

1,2,3-Propanetricarboxylic acid

CAS No: 99-14-9

Formula: C6H8O6

Categories: Inorganic Chemistry > Buffering

Tricarballylic acid, a conjugate acid of a tricarballylate, is a competitive inhibitor of the enzyme aconitate hydratase (aconitase; EC 4.2.1.3) with a Ki value of 0.52 mM[1]. More

Aluminum hydride

CAS No: 7784-21-6

Formula: AlH3

Categories: Inorganic Chemistry > Inorganic Salts

colorless, nonvolatile solid; can be obtained by reacting an ether solution of AlCl3 with LiH; used as a catalyst for organic polymerization processes [MER06]More

Lead chloride

CAS No: 7758-95-4

Formula: Cl2Pb

Categories: Inorganic Chemistry > Inorganic Salts

white crystals or powder.Insoluble in cold water; soluble in hot water. Lead chloride is a white crystalline powderMore

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.

Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.