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Polytetrafluoroethylene

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Some pans have a special coating.

Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
It helps food not stick. This makes cooking easy. It is very slippery. It can even stop ants from climbing. Do you have a pan like this?

37 words

Some pans have a special coating.

Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
It helps food not stick. This makes cooking easy. It is very slippery. This material is called PTFE.
Teflon logo.svg
Teflon logo.svg
It is a white, waxy solid. It can even stop ants from climbing.
Teflon-jar hg.jpg
Teflon-jar hg.jpg
It is used to wrap wires too. This keeps the wires safe. It is a very useful material.

63 words

PTFE is a special kind of plastic.

Teflon logo.svg
Teflon logo.svg
Many people know it by the brand name Teflon. A scientist named Roy Plunkett found it by accident in 1938. He was trying to make a new gas. Instead, he found a white, waxy solid inside a bottle.
Teflon-jar hg.jpg
Teflon-jar hg.jpg
This material is very slippery. It has a low coefficient of friction. This means it does not rub easily against other things.

Because it is slippery, it is great for non-stick pans.

Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
It is also hydrophobic. This means water does not wet it. It stays dry and keeps things from sticking. PTFE is very strong and can handle heat well. It does not react with most chemicals. This makes it useful for pipes and containers. It is also used to wrap wires in computers and planes.
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg

Making PTFE can be hard. It needs special tools to stay safe. Some chemicals used to make it can hurt the Earth. Scientists are now looking for new ways to make it. They want to find ways that are safer for nature.

192 words

Polytetrafluoroethylene, or PTFE, is a very special kind of plastic.

Teflon logo.svg
Teflon logo.svg
It is a solid material made entirely of carbon and fluorine atoms. Many people know it by the famous brand name Teflon. This material is famous because it is chemically inert. This means it does not react with most other things. It can even hold very strong or corrosive chemicals without breaking down. Because it is so stable, it is used in many important places.

PTFE works in a very unique way due to its atoms. The bonds between the carbon and fluorine are extremely strong. This strength makes the material very tough and stable. It is also hydrophobic, which means it does not like water. Water and other wet things cannot easily soak into it. This is why it is used as a non-stick coating for pans.

Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
It also has a very low coefficient of friction. This is a way to measure how slippery a surface is. Because it is so slippery, it helps machines run with less energy.
PTFE tapes with pressure-sensitive adhesive backing, rolls of 15 and 25 mm widths.jpg
PTFE tapes with pressure-sensitive adhesive backing, rolls of 15 and 25 mm widths.jpg

This material was actually discovered by accident in 1938.

Teflon logo.svg
Teflon logo.svg
A scientist named Roy J. Plunkett was working at a plant in New Jersey. He was trying to make a new gas for refrigerators. He noticed a gas bottle felt heavy but nothing was coming out. When his team sawed the bottle open, they found a white, waxy solid inside. The iron inside the bottle had helped turn the gas into this new plastic. Kinetic Chemicals patented the material in 1941 and used the name Teflon in 1945.
Teflon logo.svg
Teflon logo.svg

PTFE has many different uses in our world today. In the 1950s, it was used for fishing tackle and cooking pans.

Happy Pan Poster.jpg
Happy Pan Poster.jpg
In the United States, a man named Marion A. Trozzolo sold the first "Happy Pan" in 1961. Today, it is used for much more than just cooking. It is used as a coating for catheters in surgery. It is also used to wrap wires in computers and airplanes.
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
These wires use PTFE because it is a great insulator.

Making this plastic can sometimes be hard on the environment. For a long time, companies used a chemical called PFOA to make it. Scientists found that PFOA could stay in nature and might be harmful. Because of this, companies stopped using it and started using new chemicals like GenX. While GenX was made to be safer, experts are still studying it. We are learning how to make useful things like PTFE while also protecting our planet. Scientists continue to find better ways to build and recycle these amazing materials.

469 words

Polytetrafluoroethylene, or PTFE, is a synthetic fluoropolymer.

Teflon logo.svg
Teflon logo.svg
This material is a high-molecular-weight polymer made entirely of carbon and fluorine. It is highly valued because it is chemically inert. This means it does not react with most other substances. PTFE is a white solid at room temperature. It has a density of approximately 2200 kg/m3. It also possesses a very high melting point of 327 °C. Because of these unique properties, it is used in everything from kitchenware to advanced aerospace technology.

The unique behavior of PTFE comes from its chemical structure. The material is held together by extremely strong carbon–fluorine bonds. These bonds are so stable that only a few substances can affect them. Only highly reactive metals, like alkali metals, can break these bonds at high temperatures. PTFE is also hydrophobic. This means that water and other wet substances do not wet its surface. This happens because fluorocarbons have small London dispersion forces. These forces are weak due to the low electric polarizability of fluorine.

Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
As a result, PTFE has one of the lowest coefficients of friction of any known solid. Its coefficient of friction is measured between 0.05 and 0.10.

There are several ways to produce and process this polymer. Most PTFE is created through free-radical polymerization of tetrafluoroethylene. This process often uses a persulfate, such as potassium persulfate, to start the reaction. Manufacturers can use suspension polymerization or emulsion polymerization. In suspension polymerization, the PTFE is suspended in an aqueous medium using agitation. In emulsion polymerization, a surfactant is used to keep the PTFE in the water. Processing can be difficult because the melting point is very high. In fact, the melting temperature is above the decomposition temperature. To create parts, manufacturers often use cold-moulding. They force fine PTFE powder into a mould under high pressure. They then heat it to 360 °C to allow the particles to fuse, a process called sintering.

PTFE has a fascinating history of accidental discovery. In 1938, chemist Roy J. Plunkett was working at a DuPont plant in New Jersey.

Teflon logo.svg
Teflon logo.svg
He was attempting to create a new chlorofluorocarbon refrigerant called tetrafluoroethylene. During the experiment, a gas pressure bottle stopped flowing, but the bottle still felt heavy. Chemist John J. Beall noticed this weight difference and alerted Plunkett. When the team sawed the bottle open, they found a slippery, waxy white material inside. The iron in the container had acted as a catalyst under high pressure. This material was polymerized perfluoroethylene. Kinetic Chemicals patented this plastic in 1941 and registered the Teflon trademark in 1945.

Since its discovery, PTFE has seen many important applications. One early use was during the Manhattan Project. It was used to coat valves and seals in the K-25 uranium enrichment plant in Tennessee.

Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
In the 1950s, the material moved into the home. Colette Grégoire suggested using the material for cooking pans. Her husband, Marc Grégoire, created the first PTFE-coated pans under the brand Tefal. In 1961, Marion A. Trozzolo marketed the first US-made non-stick pan called "The Happy Pan."
Happy Pan Poster.jpg
Happy Pan Poster.jpg
Today, PTFE accounts for more than half of all fluoropolymer production worldwide.

The material is essential in several high-tech industries. In aerospace and computing, PTFE is used as insulation for wiring.

Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
It is chosen because it has excellent dielectric properties. This makes it a great insulator for high-frequency cables and circuit boards. It is also used in medical fields as a graft material in surgery. It can serve as a coating on catheters to help them move through the body. Furthermore, PTFE is used in industrial bearings, gears, and seals to reduce friction and energy consumption. Even insects are affected by it, as it can prevent ants from climbing up surfaces.

However, the production of PTFE involves environmental considerations. PTFE and its production chemicals are per- and polyfluoroalkyl substances, known as PFAS. These are considered persistent organic pollutants. For many years, DuPont used perfluorooctanoic acid, or PFOA, during production. This was later discontinued due to legal actions regarding the health and ecological effects of PFOA exposure. Chemours, a spin-off from DuPont, now uses an alternative chemical called GenX. While GenX was designed to be less persistent in the environment, its effects may be as harmful or more detrimental than PFOA. Scientists continue to study these substances to find safer ways to use these powerful materials.

757 words
🖼️ Images & Media (9)
File:Happy Pan Poster.jpg
Happy Pan Poster.jpg
File:1963 Zepel advertisement.jpg
1963 Zepel advertisement.jpg
File:EL-1994-00019.jpeg
EL-1994-00019.jpeg
File:Teflon logo.svg
Teflon logo.svg
File:Blintzes in frying pan.jpg
Blintzes in frying pan.jpg
File:Gore twisted pair cable, Passenger Experience Week 2018, Hamburg (1X7A3731) (cropped).jpg
Gore twisted pair cable, Passenger...
File:Teflon-jar hg.jpg
Teflon-jar hg.jpg
File:PTFE tapes with pressure-sensitive adhesive backing, rolls of 15 and 25 mm widths.jpg
PTFE tapes with pressure-sensitive...
File:PFA Structure.svg
PFA Structure.svg
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