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Home > Inorganic Chemistry > Inorganic Bases (Find 56 items)

Inorganic Bases

The inorganic base examples include sodium hydroxide and potassium hydroxide which are widely involved in the corrosion of metals and these corrosive bases can cause the deterioration of metal surfaces at a speedy rate through chemical reactions. Understand inorganic bases details including CAS No., properties and technical information about materials and products of high quality from our certified suppliers.

Copper hydroxide

(20427-59-2)
In manufacture of rayon, battery electrodes, other Cu salts; as mordant in dyeing; as pigment; in fungicides, insecticides; as feed additive; in treating and staining paper; in preparation of Schweitzer's reagent; in catalysts.

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Beryllium

(7440-41-7)
Source of neutrons when bombarded with alpha particles according to the equation 94Be + 42He612C + 10n.This yields about 30 neutrons per million alpha particles.Also as neutron reflector and neutron moderator in nuclear reactors.In beryllium copper and beryllium aluminum alloys (by direct reduction of beryllium oxide with carbon in the presence of Cu or Al).In aerospace, aircraft and satellite structures; x-ray transmission windows; missile parts; nuclear weapons; fuel containers; precision inst

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Nickel dihydroxide

(12054-48-7)
Used in the Battery manufacturing industry. Making nickel salt raw materials, alkaline storage batteries, electroplating, catalysts. Used for alkaline storage batteries, nickel plating, etc.; Nickel hydroxide can be obtained by adding potassium hydroxide to nickel nitrate or hexaammine nickel (II) nitrate solution and used as an oxidation catalyst.

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Strontium hydroxide

(18480-07-4)
It is used to prepare strontium lubricating wax and various strontium salts. It can also be used to improve the drying properties of dry oils and paints, as well as the refinement of beet sugar, etc.

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Cesium hydroxide

(35103-79-8)
1. Used as electrode in alkaline storage battery at sub-zero temperature. 2. Used as a polymerization catalyst for cyclosilane. 3. Cesium hydroxide is also used as a raw material for the production of other cesium salts (such as cesium chloride, which is used to produce cesium metal). Cesium metal is used in electronic components. A strong base Used as the electrolyte of the battery and the catalyst of the polymerization reaction. Cesium hydroxide is generally used to prepare basic raw mater

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Cesium hydroxide

(21351-79-1)
In storage-battery electrolytes; as catalyst in the polymerization of cyclic siloxanes.

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Cesium hydroxide

(12182-83-1)
Colorless or yellowish, crystalline solid. [Note: Hygroscopic (i.e., absorbs moisture from the air).]

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STRONTIUMHYDROXIDEOCTAHYDRATE

(1311-10-0)
It is used to prepare strontium lubricating wax and various strontium salts. It can also be used to improve the drying properties of drying oils and paints, as well as the refining of beet sugar; it is used in the preparation of strontium salts; it can be used in the manufacture of chemical reagents and strontium salts. It can be used to modify the dryness of oil and paint.

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Inorganic Bases is the product with the largest output in the basic chemical industry, and is a basic industrial raw material with a wide range of uses. Inorganic alkali is one of the important chemical raw materials. It is widely used in light industry, daily chemical, building materials, chemical industry, food industry, metallurgy, textile, petroleum, national defense, medicine and other fields. Detergents are also used in the fields of photography and analysis. Inorganic bases include soda ash and caustic soda.

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Inorganic bases are ionic compounds when dissociated in water they form hydroxide ions (OH-). These substances provide significant functions in chemistry and have wide applications on industrial and commercial levels. Some of the examples include Sodium hydroxide (NaOH), Potassium hydroxide (KOH), and Calcium hydroxide (Ca(OH)2).

There are several prominent characteristics of inorganic bases such as these substances have a bitter taste and slippery feel when handled, these substances turn litmus paper blue by having a pH value above 7 and in a neutralization reaction they form salt and water. In addition, these inorganic bases also ionize in water solutions and are good conductors of electricity. These properties make the usefulness of inorganic bases in many chemical processes.

Some of its applications are as follows:

• Removal of acid spills or wastes

• pH adjustment

• Manufacturing of cosmetics, soaps and emulsifiers

• Food production, for example, baking soda

• Medicine such as antacids

Frequently Asked Questions

What are inorganic bases and how are they used in industrial applications?

Inorganic bases are chemical compounds that release hydroxide ions (OH⁻) in aqueous solutions and typically have a pH greater than 7. Common examples include sodium hydroxide (NaOH), potassium hydroxide (KOH), and calcium hydroxide (Ca(OH)₂). They are widely used in industries such as chemical manufacturing, water treatment, pharmaceuticals, and food processing for neutralization reactions, pH adjustment, and as catalysts or reagents in synthesis processes.

How do I choose the right inorganic base for my chemical process?

Selecting the appropriate inorganic base depends on several factors:1. The required pH level and reactivity for your specific reaction.2. Compatibility with other chemicals in the system to avoid unwanted side reactions.3. Purity and grade specifications—technical, reagent, or food/pharma grade—based on end-use requirements.4. Handling and safety considerations, as strong bases like NaOH are highly corrosive.Consulting material safety data sheets (MSDS) and working with certified suppliers ensures safe and effective selection.

What safety precautions should be taken when handling inorganic bases?

Inorganic bases, especially strong ones like sodium hydroxide and potassium hydroxide, are corrosive and can cause severe skin burns or eye damage. Essential safety measures include:• Wearing personal protective equipment (PPE) such as gloves, goggles, and lab coats.• Working in well-ventilated areas or fume hoods.• Storing bases in clearly labeled, corrosion-resistant containers away from acids.• Having emergency eyewash stations and spill kits readily available.Always follow OSHA and GHS guidelines for safe handling and disposal.

What is the difference between organic and inorganic bases?

The primary difference lies in their chemical composition: inorganic bases are typically metal hydroxides (e.g., NaOH, KOH) without carbon-hydrogen bonds, while organic bases contain carbon and often feature amine groups (e.g., triethylamine, pyridine). Inorganic bases are generally stronger, more soluble in water, and used in large-scale industrial processes, whereas organic bases are common in fine chemical synthesis and pharmaceutical manufacturing due to their selectivity and milder reactivity.

Where can I buy high-purity inorganic bases for laboratory or industrial use?

High-purity inorganic bases can be sourced from reputable chemical suppliers that comply with international quality standards such as ISO, REACH, and GMP. Look for vendors offering certificates of analysis (CoA), consistent batch-to-batch quality, and proper packaging for stability. Leading global and regional chemical distributors often provide grades tailored for laboratory research, electronics, pharmaceuticals, or bulk industrial applications. Always verify supplier credentials and regulatory compliance before procurement.

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