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Zinc chloride

physical science Maturity 11-13

This is a white solid.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png
It can melt into a liquid. It mixes well with water. People use it to help make things. It can even help clean wood. Do you like to see how things change?

40 words

This is a white solid.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

It mixes very well with water. It can even soak up water from the air. This happens because it is thirsty for it.

People use it to help make things. It helps make certain smells and dyes. It can also help clean wood.

Preparation of Fluorescein.svg
Preparation of Fluorescein.svg

Long ago, people used it to kill germs. It was even used to help ships.

ZnCl2 aromatics (cropped indole).gif
ZnCl2 aromatics (cropped indole).gif

It is a very useful tool for science. It helps us build many new things.

86 words

Zinc chloride is a white or colorless solid.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png
It is made by reacting zinc with hydrogen chloride. This chemical can take many forms. Some forms hold extra water. We call these forms hydrates. There are five known hydrates. The solid can also change its crystal shape. These different shapes are called polymorphs. There are four known polymorphs.

Zinc chloride is very useful in many ways. It is a Lewis acid. This means it can act like a tool to help make chemical changes. It helps make benzaldehyde. This is a chemical used to make many smells. It also helps make dyes like fluorescein.

Preparation of Fluorescein.svg
Preparation of Fluorescein.svg

In factories, it helps make many things. It is used in making textiles. It is also used in metallurgy. This is the study of metals. It helps clean metal surfaces for soldering. This happens because it dissolves metal oxides.

ZnCl2 aromatics (cropped indole).gif
ZnCl2 aromatics (cropped indole).gif
Long ago, people used it to kill germs. It was even used to help protect wood and ships.

168 words

Zinc chloride is a very useful chemical compound. It usually looks like white or colorless crystals.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png
This substance is highly soluble, which means it dissolves easily in water. It can also exist as a hydrate. A hydrate is a form that holds extra water molecules inside its structure. Scientists know of five different hydrates for zinc chloride. The chemical can also take different crystal shapes called polymorphs. There are four known polymorphs, which include alpha, beta, gamma, and delta forms.
CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

Making zinc chloride is a step-by-step process. Most often, it is made by reacting zinc or zinc compounds with hydrogen chloride. This can include using zinc metal, zinc oxide, or zinc sulfide. You can also make hydrates by evaporating water from a solution. The temperature during this evaporation changes which hydrate you get. For example, evaporating at room temperature creates the 1.33-hydrate. Lower temperatures produce different types of hydrates.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

People have used this chemical for a long time. In 1839, Sir William Burnett promoted its use as a disinfectant. He also used it to help preserve wood. During the cholera epidemic of 1849, the Royal Navy tested it as a disinfectant. In 1855, Stanislas Sorel investigated a cement made from zinc chloride and zinc oxide. This work helped lead to the study of magnesium oxychloride cement. Later, the use of zinc chloride as a disinfectant was mostly replaced by carbolic acid.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

Zinc chloride is used in many important industrial ways. It acts as a Lewis acid, which is a tool that helps chemical reactions happen. It is used to make benzaldehyde, a chemical used in many ways. Western countries produce about 20,000 tons of benzaldehyde every year. The chemical also helps make dyes like fluorescein.

Preparation of Fluorescein.svg
Preparation of Fluorescein.svg
In metallurgy, it works as a flux for soldering. It does this by dissolving metal oxides to reveal clean metal. It is also used in textile processing and chemical synthesis.
ZnCl2 aromatics (cropped indole).gif
ZnCl2 aromatics (cropped indole).gif

This chemical is also famous in advanced science. It helps create organozinc reagents used in many lab tests. One important method is the Negishi coupling. This reaction was so important that Ei-ichi Negishi won the Nobel Prize in Chemistry in 2010.

ZnCl2 Negishi.gif
ZnCl2 Negishi.gif
Zinc chloride can even help make carbon-carbon bonds. This was first reported in 1880 by Joseph Achille Le Bel and William H. Greene. These discoveries show how much this simple white solid can do for the world.

412 words

Zinc chloride is an inorganic chemical compound with the formula ZnCl2·nH2O. The "n" in the formula represents the number of water molecules attached to the structure. This number can range from 0 to 4.5, creating what scientists call hydrates. In its pure, anhydrous form, it is a colorless or white crystalline solid. It is also highly soluble, meaning it dissolves very easily in water. This compound is a versatile tool in both laboratory science and large-scale industry.

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CSD CIF TOCMON02.png

To create zinc chloride, scientists usually react zinc or its various compounds with hydrogen chloride. This can involve using zinc metal, zinc carbonate, zinc oxide, or zinc sulfide. When making hydrates, the process relies on the controlled evaporation of aqueous solutions. The specific temperature used during evaporation determines which hydrate is produced. For instance, evaporating at room temperature creates the 1.33-hydrate. Using lower evaporation temperatures results in higher hydrates.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

The structure of zinc chloride is quite complex. Anhydrous zinc chloride can exist in four different crystalline shapes, known as polymorphs. These are labeled as the alpha, beta, gamma, and delta forms. Each of these forms features zinc centers surrounded by four chloride ligands in a tetrahedral arrangement. The delta form is particularly unstable in the open air. It can rapidly change into another polymorph when exposed to the atmosphere. This change likely happens because ions from absorbed water help the structure rearrange itself.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

History shows that zinc chloride has been used for many different purposes. In 1839, Sir William Burnett promoted its use as a disinfectant and a wood preservative. During the cholera epidemic of 1849, the Royal Navy even conducted trials using dilute zinc chloride as a disinfectant. In 1855, Stanislas Sorel investigated an amorphous cement made from zinc oxide and aqueous zinc chloride. This research eventually led to the study of magnesium oxychloride cement, which is named after him. While Burnett had commercial success, his disinfectant was later replaced by carbolic acid.

CSD CIF TOCMON02.png
CSD CIF TOCMON02.png

In the world of chemistry, zinc chloride acts as a powerful Lewis acid. A Lewis acid is a substance that can accept electron pairs from other molecules. This property allows it to form complexes with many different Lewis bases. For example, it can form adducts with weak bases like tetrahydrofuran. It also reacts with ammonia to produce various ammine complexes. In organic chemistry, it is used as a catalyst to drive important reactions. One famous example is the production of the dye fluorescein from phthalic anhydride and resorcinol.

Preparation of Fluorescein.svg
Preparation of Fluorescein.svg

Industrial applications of zinc chloride are vast and reach many different sectors. In the textile industry, it is used for various processing tasks. In metallurgy, it serves as a flux for soldering. As a flux, it dissolves metal oxides to expose clean metal surfaces for better bonding. It is also essential for producing benzaldehyde. In Western countries alone, about 20,000 tons of benzaldehyde are produced annually using zinc chloride as a catalyst. This process involves the chlorination of toluene to create benzal chloride.

Modern science has also used zinc chloride to unlock new ways of building molecules. It is a common precursor for making organozinc reagents. These reagents are vital for the Negishi coupling, a reaction involving aryl or vinyl halides. This specific method was so significant to the field of chemistry that Ei-ichi Negishi won the Nobel Prize in Chemistry in 2010.

ZnCl2 Negishi.gif
ZnCl2 Negishi.gif
Furthermore, zinc chloride can help facilitate the formation of carbon-carbon bonds. This capability was first reported in 1880 by Joseph Achille Le Bel and William H. Greene. These diverse uses show how a single white solid can impact everything from medicine to heavy industry.

615 words
🖼️ Images & Media (6)
File:CSD CIF TOCMON02.png
CSD CIF TOCMON02.png
File:ZnCl2 aromatics (cropped indole).gif
ZnCl2 aromatics (cropped indole).gif
File:Preparation_of_Fluorescein.svg
Preparation_of_Fluorescein.svg
File:ZnCl2 benzylation (cropped).gif
ZnCl2 benzylation (cropped).gif
File:ZnCl2 aldol (cropped).gif
ZnCl2 aldol (cropped).gif
File:ZnCl2 Negishi.gif
ZnCl2 Negishi.gif
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