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Pyridine

physical science Maturity 11-13

This is a clear liquid.

Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
It has a fishy smell. It can burn very fast. People use it to make medicine. It is also used for vitamins. Do you like the smell of fish?
ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg

36 words

Pyridine is a clear liquid.

Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
It has a fishy smell. It can burn very fast. A man named Thomas Anderson found it.
ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg
He found it in oil from bones. It can mix well with water. People use it to make medicine. It is also used for vitamins. It can even be found in coffee.
Kristallstruktur Pyridin.png
Kristallstruktur Pyridin.png
Tiny bits are in fried chicken, too. This liquid is very useful in our world.

73 words

Pyridine is a clear liquid with a strong smell.

Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
It smells like fish. This liquid can burn very easily. It is also called a basic heterocyclic compound. This means its ring shape has atoms other than carbon.
Pyridine-orbitals.svg
Pyridine-orbitals.svg

In pyridine, one nitrogen atom sits in a six-sided ring. This ring is very similar to benzene. Benzene is a famous ring made of only carbon. A scientist named Thomas Anderson found pure pyridine in 1851.

ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg
He found it in oil from heated animal bones. He named it after the Greek word for fire.

Today, we make pyridine in large amounts. Most of it is made using a way called the Chichibabin synthesis.

AcroleinDarstellung.svg
AcroleinDarstellung.svg
This method uses inexpensive parts to make the liquid. We use pyridine to make many important things. It helps make vitamins and medicines. You can even find tiny traces of it in roasted coffee. It is also in foods like fried chicken and potato chips.

159 words

Pyridine is a clear liquid that is very useful in science.

Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
It has a very strong and unpleasant smell like fish. This liquid is highly flammable, which means it catches fire easily. It is also known as a basic heterocyclic organic compound. This term means its ring shape contains a nitrogen atom instead of just carbon.
Pyridine-orbitals.svg
Pyridine-orbitals.svg
Because of its shape, it is used to make many things. It helps create vitamins, medicines, and even chemicals for farming.

To understand how it works, look at its ring shape.

Pyridine-10.png
Pyridine-10.png
Pyridine is made of a six-sided ring of atoms. It is very similar to a ring called benzene. However, in pyridine, one carbon atom is replaced by a nitrogen atom. This change makes the electron density uneven across the ring. The nitrogen atom also has a lone pair of electrons. These electrons point outward from the ring. This feature helps the molecule form new bonds during chemical reactions.

People have been studying pyridine for a long time.

ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg
A Scottish scientist named Thomas Anderson first documented it in 1849. He found it by heating animal bones at high temperatures. He named it after the Greek word for fire because it burns well. Later, scientists like Wilhelm Körner and James Dewar figured out its structure. In 1876, William Ramsay made the first synthesis of this type of compound. He used a red-hot iron-tube furnace to combine different parts.

Making pyridine has changed a lot over the years.

AcroleinDarstellung.svg
AcroleinDarstellung.svg
In the past, people extracted it from coal tar. This was a hard job because coal tar only had a tiny amount. In 1924, a Russian chemist named Aleksei Chichibabin found a better way. His method uses inexpensive ingredients to make the liquid. Today, the world makes about 20,000 tons of pyridine every year. This production happens in many places, including mainland China and Europe.

You might encounter tiny traces of pyridine in your daily life.

Hantzsch pyridine synthesis.svg
Hantzsch pyridine synthesis.svg
It can be found in the smell of roasted coffee. You might also find traces in fried chicken, potato chips, or bacon. These traces appear during the roasting and canning processes. It can even be found in very small amounts in sunflower honey. While it is used to make important medicines, it is not something you want to eat. Scientists keep studying it to understand how it interacts with the world.

397 words

Pyridine is a basic heterocyclic organic compound with the chemical formula C5H5N.

Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
It is a colorless liquid that often appears yellow if it is impure or old. Pyridine has a very distinctive and unpleasant fish-like smell. It is also highly flammable and acts as a weakly alkaline substance. This compound is incredibly important in modern chemistry. It serves as a building block for many commercial products. These include essential vitamins, various pharmaceuticals, and many agrochemicals used in farming.
Pyridine-orbitals.svg
Pyridine-orbitals.svg

To understand its chemistry, one must look at its molecular structure. Pyridine is structurally related to benzene, which is a famous six-sided carbon ring. In pyridine, one methine group in the benzene ring is replaced by a nitrogen atom.

Pyridine-10.png
Pyridine-10.png
This creates a planar, six-sided ring that follows the Hückel criteria for aromatic systems. However, the presence of the nitrogen atom changes how electrons are distributed. The nitrogen creates a negative inductive effect. This causes the electron density to be uneven across the ring. Because of this unevenness, pyridine has a dipole moment. It also has a lower resonance energy than benzene. Benzene has a resonance energy of 150 kJ/mol, while pyridine has only 117 kJ/mol.

The nitrogen atom in the ring plays a very specific role in how the molecule reacts. The ring atoms are sp2-hybridized. The nitrogen atom uses its unhybridized p orbital to participate in the π-bonding aromatic system. Crucially, the nitrogen also possesses a lone pair of electrons. This lone pair sits in an sp2 orbital that projects outward from the ring. This lone pair does not contribute to the aromatic system itself. Instead, it makes the nitrogen atom ready for electrophilic attack. This allows pyridine to support the formation of new chemical bonds quite easily.

Pyridine-orbitals.svg
Pyridine-orbitals.svg

The history of pyridine began with early observations by alchemists. They likely produced it by heating animal bones and organic matter. The first formal scientific documentation came from the Scottish scientist Thomas Anderson in 1849.

ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg
Anderson was examining oil produced by heating animal bones at high temperatures. He isolated a colorless liquid with a bad odor. Because the substance was so flammable, he named it pyridine. The name comes from the Greek word "pyr," meaning fire. Later, scientists Wilhelm Körner and James Dewar suggested its structure in the late 1800s. They proposed that it was derived from benzene by replacing a C–H unit with nitrogen. This idea was later confirmed through experiments involving the reduction of pyridine to piperidine.

Methods for making pyridine have evolved significantly over time. Historically, it was extracted from coal tar. This was a very inefficient process because coal tar contains only about 0.1% pyridine. This required many stages of purification to get a usable amount. A major breakthrough occurred in 1924 when Aleksei Chichibabin invented a new synthesis. His method used inexpensive reagents and remains a foundation for industrial production today.

AcroleinDarstellung.svg
AcroleinDarstellung.svg
One common industrial route involves the Chichibabin synthesis. In this process, formaldehyde and acetaldehyde are used to form acrolein. The acrolein then condenses with more acetaldehyde and ammonia to create dihydropyridine. Finally, this is oxidized to produce pyridine. This reaction typically happens in a gas phase at temperatures between 400 and 450 °C.

Today, the scale of pyridine production is massive. As of 2016, approximately 20,000 tons of pyridine are synthesized worldwide every year. In 1989, the global production was recorded at 26,000 tonnes. Production has grown significantly in recent years, with mainland China reaching a capacity of 30,000 tonnes in the early 2000s. Many large companies produce this chemical, including Evonik Industries and Imperial Chemical Industries. The joint venture Vertellus is currently recognized as the world leader in production. Many other derivatives, such as methylpyridines, are also produced on a very large scale.

Even though it is a laboratory chemical, pyridine appears in trace amounts in the world around us. It is found in the volatile organic compounds produced during roasting and canning. You might find tiny amounts in roasted coffee, fried chicken, potato chips, or fried bacon. It has also been detected in sunflower honey and Beaufort cheese. In the environment, it can be released by industrial processes like steel manufacture or coal gasification. For example, groundwater near a coal gasification plant once showed levels of 53 μg/m3. In the United States, about 43,000 people work in jobs where they come into contact with pyridine.

726 words
🖼️ Images & Media (27)
File:PyridineXray.svg
PyridineXray.svg
File:Kristallstruktur Pyridin.png
Kristallstruktur Pyridin.png
File:Pyridine-2D-Skeletal.png
Pyridine-2D-Skeletal.png
File:Bond lengths of group 15 heterobenzenes and benzene.svg
Bond lengths of group 15 heterobenzenes...
File:Pyridine-orbitals.svg
Pyridine-orbitals.svg
File:Pyridine-10.png
Pyridine-10.png
File:Pyridinium-orbitals.svg
Pyridinium-orbitals.svg
File:ThomasAnderson(1819-1874).jpg
ThomasAnderson(1819-1874).jpg
File:Hantzsch pyridine synthesis.svg
Hantzsch pyridine synthesis.svg
File:AcroleinDarstellung.svg
AcroleinDarstellung.svg
File:Pyridin aus Acrolein.svg
Pyridin aus Acrolein.svg
File:BönnemannEn.png
BönnemannEn.png

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