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Thiol

physical science Maturity 11-13

Some things have a very strong smell.

Mercapto Group General Formulae.png
Mercapto Group General Formulae.png
They can smell like eggs or garlic. Some even smell like a skunk! This smell helps us find gas. We use it to stay safe. Can you smell anything funny today?

42 words

Some things have a very strong smell.

Mercapto Group General Formulae.png
Mercapto Group General Formulae.png
These things are called thiols. Many thiols smell like garlic or rotten eggs. Some even smell like a skunk!
Thiophenolat Synthesis.png
Thiophenolat Synthesis.png
We use these smells to stay safe. Natural gas has no smell at all. People add thiols to the gas. This helps us smell if there is a leak. Some thiols can even smell like coffee or grapefruit. It is amazing how many smells they make!

78 words

Thiols are special types of molecules. They are made of sulfur and other parts. Many thiols have very strong smells. Some smell like garlic or cabbage. Others smell like rotten eggs. Even skunk spray is made of thiols.

Mercapto Group General Formulae.png
Mercapto Group General Formulae.png

We can use these smells to stay safe. Natural gas has no smell on its own. This can be dangerous if it leaks. To help, people add thiols to the gas. This way, we can smell a leak right away.

Not all thiols smell bad. Some can smell very good! One type helps make the aroma of roasted coffee. Another type gives grapefruit its scent.

Thiophenolat Synthesis.png
Thiophenolat Synthesis.png

Thiols are like alcohols. In an alcohol, there is an oxygen part. In a thiol, sulfur takes the place of that oxygen. This part is called a sulfhydryl group. Because sulfur atoms are larger than oxygen, the bonds in thiols are longer. This makes them act differently than alcohols.

158 words

Thiols are a special group of organic compounds. They are made of sulfur and other organic parts. You might know them by another name: the sulfhydryl group.

Mercapto Group General Formulae.png
Mercapto Group General Formulae.png
This group is what makes thiols unique. They are very similar to alcohols. In an alcohol, there is an oxygen atom. In a thiol, a sulfur atom takes that oxygen's place. Because sulfur atoms are larger than oxygen atoms, the bonds are longer. This small change makes them act very differently from alcohols.

Many thiols have very strong and distinct smells. Some smell like garlic, cabbage, or even rotten eggs. Even the spray from a skunk is made of thiols.

Thiophenolat Synthesis.png
Thiophenolat Synthesis.png
These smells are so strong that humans can detect them at tiny levels. For example, we can smell some thiols at just 10 parts per billion. However, not all thiols smell bad. Some thiols create the lovely aroma in roasted coffee. Another type gives grapefruit its famous scent.

History shows how we use these smells for safety. Natural gas is naturally odorless, which can be dangerous. If gas leaks, you might not know it is there. In the United States, people began adding thiols to natural gas after a big explosion in New London, Texas, in 1937. This allows people to smell a leak immediately. Most gas companies use a mixture of thiols today. They often use t-butyl mercaptan for natural gas. They use ethanethiol for liquefied petroleum gas, also known as LPG.

A scientist named William Christopher Zeise discovered a thiol in 1834. He was a professor of chemistry from Denmark. He called the substance "mercaptan." This name comes from a Latin phrase meaning "mercury-capturing substance." He chose this name because the substance reacted strongly with mercury(II) oxide. The term mercaptan was used for a long time. Today, scientists often use the term thiol instead. They use different names depending on how the molecule is built.

Thiols are found in many places in our world. They are part of human sweat and even mouse urine. In mice, certain thiols act as signals to attract others. We also find thiols in food and drink. They can cause a "skunky" smell in beer if it sees ultraviolet light. They can also cause faults in wine. In the body, thiols like cysteine are very important. They are amino acids that help living things work.

RNR reaction.png
RNR reaction.png
Thiols are truly everywhere in nature and science.

405 words

Thiols are a specific class of organosulfur compounds. They consist of an organic substituent, represented by the letter R, bonded to a sulfhydryl group. This sulfhydryl group is also known as a thiol group or a sulfanyl group.

Mercapto Group General Formulae.png
Mercapto Group General Formulae.png
Thiols are the sulfur analogues of alcohols. In an alcohol, an oxygen atom forms a hydroxyl group. In a thiol, a sulfur atom takes the place of that oxygen. This small change in the atom creates very different chemical properties.

To understand how thiols work, we must look at their molecular structure. The general formula for a thiol is R-S-H. Because sulfur atoms are larger than oxygen atoms, the bonds between carbon and sulfur are longer. A typical C-S bond is about 180 picometres. This is roughly 40 picometres longer than a standard C-O bond found in alcohols. The C-S-H bond angle also approaches 90 degrees. This differs from the more obtuse angles found in the C-O-H groups of alcohols.

Thiophenolat Synthesis.png
Thiophenolat Synthesis.png
Because sulfur atoms are highly polarizable, the main cohesive forces in thiols involve Van der Waals interactions. This makes thiols more volatile than alcohols of a similar molecular weight. They also show less association with hydrogen bonding. This results in lower boiling points and less solubility in water compared to alcohols.

Thiols can be categorized into several distinct types based on their structure. Alkyl thiols are the simplest forms, where the R group is an alkyl chain. Examples include methanethiol and ethanethiol. Aryl thiols, such as thiophenol, contain an aromatic ring. There are also dithiols, which contain two sulfhydryl groups. Examples include 1,3-propanedithiol and lipoic acid. Some thiols are unsaturated, meaning they contain double bonds. A famous example is grapefruit mercaptan. Finally, there are thiol-carboxylic acids, which include important biological molecules like the amino acid cysteine.

History provides a fascinating look at how these compounds were identified. In 1834, a Danish professor of chemistry named William Christopher Zeise discovered a thiol. He referred to it as a "mercaptan." This name comes from the Latin phrase "corpus mercurio captum," meaning a mercury-capturing substance. Zeise chose this name because the substance reacted violently with mercury(II) oxide. While the term mercaptan is still used, modern chemistry often uses the term thiol. The IUPAC uses the suffix "-thiol" to name these compounds, such as methanethiol. Alternatively, the word "mercapto" can be used as a prefix, as seen in mercaptopurine.

One of the most significant aspects of thiols is their intense odor. Many thiols have strong, repulsive smells resembling garlic, cabbage, or rotten eggs. Humans are incredibly sensitive to these scents. We can detect certain thiols at concentrations of only 10 parts per billion. This sensitivity is used for public safety. In the United States, distributors add thiols to natural gas. Natural gas is naturally odorless, which makes leaks hard to find. After a deadly explosion in New London, Texas, in 1937, adding odorants became a standard safety practice. Most natural gas today uses t-butyl mercaptan as a main odorant.

Thiols also play surprising roles in biology and food science. In the animal kingdom, certain thiols act as semiochemicals. For example, a specific thiol in male mouse urine attracts female mice. In humans, the thiol (R)/(S)-3-methyl-3-sulfanylhexan-1-ol is found in sweat. Depending on its orientation, it can smell like onions or grapefruit. Thiols can also affect our drinks. They can cause wine faults or give beer a "skunky" odor when exposed to ultraviolet light. However, not all thiols smell bad. Furan-2-ylmethanethiol contributes to the pleasant aroma of roasted coffee.

Beyond smells, thiols are essential to complex biological systems. They are found in many important molecules, such as Coenzyme A and glutathione. The amino acid cysteine is a vital building block for proteins. Some proteins, called metallothioneins, are rich in cysteine and have a high affinity for heavy metals.

RNR reaction.png
RNR reaction.png
These molecules are central to how cells manage chemical reactions. In industrial settings, thiols are sometimes neutralized using a copper-based oxidation catalyst. This process transforms volatile thiols into inert products, which is useful when handling large amounts of liquid petroleum gas.

679 words
🖼️ Images & Media (3)
File:Mercapto Group General Formulae.png
Mercapto Group General Formulae.png
File:Thiophenolat Synthesis.png
Thiophenolat Synthesis.png
File:RNR reaction.png
RNR reaction.png
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