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Dimethylformamide

physical science Maturity 11-13

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DmfDNMR.png
DmfDNMR.png
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43 words

This is a clear liquid. It is used to make many things. It helps make plastic and soft clothes. It is even used to make glue.

DMF resonances.png
DMF resonances.png

This liquid can mix with water. It does not have a smell when it is pure. Sometimes it smells like fish. This happens if it is not clean.

DmfDNMR.png
DmfDNMR.png

It can help make medicine and paints. It can even help keep gas safe. It is a very useful liquid for science.

79 words

Dimethylformamide is a clear liquid. Scientists often call it DMF. It is a solvent. A solvent is a liquid that helps dissolve other things. DMF can mix well with water. It also mixes with most organic liquids.

DMF resonances.png
DMF resonances.png

Pure DMF has no smell. But it can smell like fish if it is not clean. This happens because of tiny bits of another chemical.

DmfDNMR.png
DmfDNMR.png

DMF is very useful in making things. It helps make plastic and soft fibers. It is used to make glue and paint. It also helps make medicines and pesticides. Some people use it to make dyes.

Acyl chloride via amide catalysis.png
Acyl chloride via amide catalysis.png

DMF can even keep gas safe. Some gases can explode if they are squeezed too tight. DMF helps make a safe liquid for these gases. This makes them easy to move and use. In 1893, a chemist named Albert Verley first found this liquid. Today, factories make it using other chemicals. It is a very important tool for science.

165 words

Dimethylformamide is a clear liquid used by scientists all over the world. Most people call it DMF for short. It is a special kind of liquid called a solvent. A solvent is something that can dissolve or mix with other substances. DMF is very good at this job because it can mix with water and many organic liquids.

DMF resonances.png
DMF resonances.png
It is also a polar aprotic solvent. This means it has a certain electrical charge that helps it work in many chemical reactions. Because it does not evaporate quickly, it is a very helpful tool in many different labs.

There are many ways that DMF works in science. It can act as a reagent, which is a substance used to cause a change in another substance. For example, it is used in the Vilsmeier-Haack reaction to make aromatic compounds. In this process, DMF turns into a special thing called a chloroiminium ion. It is also used in the Bouveault aldehyde synthesis to create aldehydes.

Acyl chloride via amide catalysis.png
Acyl chloride via amide catalysis.png
Sometimes, DMF can even help keep gases safe. Some gases, like acetylene, can explode if they are squeezed too tightly. DMF helps turn these gases into a safe liquid solution for moving them.

We can learn about the history of this liquid by looking at the past. A French chemist named Albert Verley first found DMF in 1893. He made it by distilling a mixture of dimethylamine hydrochloride and potassium formate. Today, factories make it in a different way. They often combine methyl formate with dimethylamine. They can also make it by reacting dimethylamine with carbon monoxide.

DmfDNMR.png
DmfDNMR.png
Scientists are even looking at ways to make it using carbon dioxide and special catalysts.

DMF is used to make many things we see every day. It helps produce acrylic fibers and different types of plastics. It is also used to make medicines, pesticides, and strong glues. You might find it in synthetic leathers, films, or surface coatings.

DmfDNMR.png
DmfDNMR.png
It is even used to help make dyes. In a lab, scientists use it to separate tiny carbon nanotubes. It is also used in a process called electrospinning to create very fine fibers.

Even though it is helpful, scientists must be careful with DMF. If the liquid is not pure, it might smell like fish. This happens because of tiny bits of a chemical called dimethylamine.

DmfDNMR.png
DmfDNMR.png
DMF can also make some plastics swell up. In 2018, the Danish Environmental Protective Agency found DMF in certain toys called squishies. Because of this, those toys were removed from the market in Denmark. Scientists always study how these chemicals affect the world to keep people safe.

440 words

Dimethylformamide, often called DMF, is a colorless liquid used widely in science and industry. It is an organic compound with the chemical formula (CH3)2NCHO. Scientists value DMF because it is a polar aprotic solvent. This means it has a specific electrical structure that allows it to dissolve many different substances. It is miscible with water and most organic liquids. This ability to mix easily makes it a very common solvent for chemical reactions.

DMF resonances.png
DMF resonances.png

Understanding how DMF works requires looking at its molecular structure. It is structurally related to a substance called formamide. In DMF, two methyl groups take the place of two hydrogen atoms. The molecule has a special property called partial double bond character. This occurs in the bonds between the carbon, nitrogen, and oxygen atoms. Because of this, the molecule is considered fluxional. This means its structure can change or move in specific ways. For example, at room temperature, the rotation around the carbon-nitrogen bond is hindered. However, when the temperature reaches nearly 100 °C, the molecules rotate more freely.

DmfDNMR.png
DmfDNMR.png

DMF can also act as a chemical reagent in many different types of reactions. In the Vilsmeier-Haack reaction, DMF helps create aromatic compounds. During this process, DMF converts into a chloroiminium ion. This specific substance is known as a Vilsmeier reagent. It then attacks arenes to complete the reaction. Another example is the Bouveault aldehyde synthesis. In this process, organolithium compounds or Grignard reagents react with DMF. After a step called hydrolysis, this reaction produces aldehydes.

Acyl chloride via amide catalysis.png
Acyl chloride via amide catalysis.png

There are several ways that DMF interacts with other chemicals. It can be hydrolyzed, which means it breaks down when it meets strong acids or bases. If it reacts with sodium hydroxide, it converts into formate and dimethylamine. Near its boiling point, DMF undergoes decarbonylation. This process produces dimethylamine and carbon monoxide. Because of this, scientists must use reduced pressure and lower temperatures when they perform distillation. DMF also forms 1:1 adducts with Lewis acids. It is classified as a hard Lewis base. This classification describes its strength when interacting with other chemical structures.

We can trace the history of this compound back to the late 19th century. A French chemist named Albert Verley first obtained DMF in 1893. He created it by distilling a mixture of potassium formate and dimethylamine hydrochloride. Today, the way we make DMF is different and more industrial. Factories often combine dimethylamine with methyl formate. They can also produce it by reacting dimethylamine with carbon monoxide. Scientists are even exploring ways to make it using supercritical carbon dioxide and ruthenium-based catalysts.

Because of its unique properties, DMF has many important applications. It is a primary solvent used in the production of plastics and acrylic fibers. It is also used to manufacture adhesives, films, and synthetic leathers. In the medical field, it helps with peptide coupling for pharmaceuticals. It is also used to develop and produce pesticides. Interestingly, DMF can penetrate most plastics and cause them to swell. This makes it useful for paint strippers and solid phase peptide synthesis. It is even used to help safely compress acetylene gas for transport.

DMF resonances.png
DMF resonances.png

While DMF is very useful, it must be handled with care. Pure DMF is odorless, but technical-grade samples may smell like fish. This smell comes from impurities like dimethylamine. These impurities can be removed by using an inert gas like argon. Scientists also look at the safety and toxicity of the liquid. For example, the acute LD50 for rats and mice is between 2.2 and 7.55 g/kg. In 2018, the Danish Environmental Protective Agency found DMF in "squishy" toys. Because of the density of the compound in these toys, they were removed from the Danish market. This shows why scientists carefully monitor how chemicals interact with the products we use every day.

636 words
🖼️ Images & Media (3)
File:DmfDNMR.png
DmfDNMR.png
File:DMF resonances.png
DMF resonances.png
File:Acyl chloride via amide catalysis.png
Acyl chloride via amide catalysis.png
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