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Home > Inorganic Chemistry > Inorganic Salts (Find 1906 items)
Discover the various applications of inorganic salts such as potassium chloride and potassium sulfate. Uncover the diverse uses in agriculture, chemical synthesis, and pharmaceuticals. Explore the CAS NO., properties, and SDS of these essential inorganic salts. Source raw potassium chloride and potassium sulfate materials from certified suppliers, and ensure comprehensive product information.

LITHIUM BROMIDE HYDRATE, 99

(13453-70-8)
Used as water vapor absorbent, air temperature regulator, absorption refrigerant, hydrogen chloride removal agent, sedative, and for photography, battery, etc.

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Iodine chloride

(7790-99-0)
In Wijs' solution (iodine monochloride in glacial acetic acid), used to determine iodine values of fats and oils.

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Manganese fluoride (MnF3)

(7783-53-1)
Manganese fluoride is produced by the reaction of manganese iodide with fluorine. Manganese fluoride can be used to convert hydrocarbons into fluorocarbons, or fluorinated agents. It is used as Lewis acid in organic synthesis to prepare a variety of organic compounds. Manganese trifluoride exhibits interesting magnetic properties, and its potential uses in magnetic materials and devices have been investigated.

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Scandium iodide (ScI3)

(14474-33-0)
Scandium Iodide, or ScI₃, is a versatile compound with a wide range of applications covering several important areas of science and technology. First, ScI₃ plays an important role in the field of optical materials. Due to its excellent optical properties and excellent thermal stability, ScI₃ is widely used in the manufacture of highly efficient optical materials and laser components. These materials play a key role in optical instrumentation, laser technology, and precision measurement equipment, providing high-performance solutions in these fields. In the field of battery technology, ScI₃ also has significant application value. As part of the battery material, ScI₃ can significantly improve the energy density and efficiency of the battery. Especially in the research and development of high energy density batteries, the introduction of ScI₃ provides a new possibility for the improvement of battery performance. This not only helps to extend the battery life, but also improves the performance and reliability of electronic devices. In addition, ScI₃ also excelled in chemical reactions, especially in the field of catalysis. As an effective catalyst, ScI₃ can significantly promote the rate of chemical reaction and thus increase the yield of products. This makes the chemical reaction process more efficient, helping to reduce production costs and improve economic efficiency. In the fields of fine chemical industry, pharmaceutical industry and synthesis of new materials, the catalytic role of ScI₃ has important application value. Finally, ScI₃ also plays an important role in the field of basic research. In the study of materials science and solid-state physics, ScI₃ is widely used to deeply explore and understand the properties and behavior of materials. By studying the physical and chemical characteristics of ScI₃, scientists can better grasp the relationship between the microstructure and macroscopic properties of the material, thus providing a theoretical basis for the design and development of new materials. Scandium Iodide has a wide range of applications in many fields such as optical materials, battery technology, catalysts and basic research, and its unique properties and characteristics make it an important material for scientific research and industrial applications.

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Phosphorofluoridic acid

(13537-32-1)
Used as metal detergent, chemical polish, catalyst, metal surface preservative, etc.

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Inorganic salts are mineral nutrients that exist in the body and in food. Most inorganic salts in cells exist in the form of ions and are composed of organic and inorganic substances. . At present, the human body has found more than 20 species, of which a large number of elements are calcium Ca, phosphorus P, potassium K, sulfur S, sodium Na, chlorine Cl, magnesium Mg, trace elements are iron Fe, zinc Zn, selenium Se, molybdenum Mo, fluorine F , Chromium Cr, cobalt Co, iodine I, etc.

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Inorganic salts, also known as minerals, encompass both major and trace elements, constituting essential substances in human metabolism. Most often, when referring to inorganic salts, we imply pure substances, such as laboratory-grade sodium chloride. We do not label it as table salt because additional substances are often added to table salt.


The primary distinction between inorganic and organic salts lies in the nature of their anions. Much of their chemical properties are determined by these anions. For instance, inorganic salts typically exhibit strong hydrophilicity, while organic salts may display affinity towards certain nonpolar reagents.


Despite their low concentration in cells and the human body, inorganic salts play significant roles. A diversified diet, with less animal fat consumption and more consumption of coarse grains like brown rice and corn, and limited intake of refined flour, helps maintain the normal levels of inorganic salts within the body.


Common inorganic salts include:
● sodium chloride
● potassium chloride
● calcium carbonate
● magnesium sulfate
● ammonium nitrate

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