This is a very strong liquid. 

This liquid is a superacid. 
It has a funny name. People call it magic acid. This happened at a party in 1966. Someone put a wax candle in it. The acid melted the wax very fast. 
This acid can change how things work. It can even change small gases. It can turn one kind of gas into another. This helps scientists study how parts of things move. It is a very powerful tool for science.
Magic acid is a very strong liquid. Scientists call it a superacid. This means it is much stronger than regular acid. It is millions of times stronger than sulfuric acid. 
Ronald Gillespie and his team made it in the 1960s. The liquid is a mix of two parts. These parts are fluorosulfuric acid and antimony pentafluoride. It got its funny name at a party in 1966. A person put a wax candle in the acid. The acid dissolved the wax very fast.
This acid helps scientists study tiny parts called carbocations. These are parts of a molecule that lack electrons. 

Because it is so strong, it is also dangerous. It can cause bad burns to skin and eyes. People must wear masks and shields to stay safe. It is also toxic to life in the water.
Magic acid is a very powerful liquid. Scientists call it a superacid. This means it is much stronger than common acids. For example, it is millions of times stronger than sulfuric acid. 
This acid works by providing protons. A proton is a tiny part of an atom. Magic acid is a mix of two things. It uses fluorosulfuric acid and antimony pentafluoride. Most of the time, they are mixed in a one-to-one ratio. This mixture creates a system that can react with almost anything. It can even react with methane gas. It can also react with xenon and hydrogen. 
Scientists first used the term superacid in 1927. James Bryant Conant found that perchloric acid was very strong. Later, Ronald Gillespie and his team developed magic acid in the 1960s. They wanted to study carbocations. These are tiny pieces of molecules that lack electrons. They are often very hard to see. The funny name came from a 1966 Christmas party. A lab member put a wax candle into the acid. The acid dissolved the candle very quickly. 
Magic acid helps us see how atoms move. It can create special shapes called carbocations. Some of these are called nonclassical ions. These ions have bonds that involve more than two atoms at once. 

Working with such a strong acid requires great care. It is much stronger than the acids used in many schools. It can cause severe burns to the skin and eyes. It is also toxic to living things in the water. Scientists must wear special gear to stay safe. They use gloves and goggles. They also use face shields and respirators. This keeps the strong liquid away from their bodies.
Magic acid is a highly potent liquid known as a superacid. A superacid is any acid that is stronger than 100% sulfuric acid. 
The strength of magic acid can be measured using the Hammett acidity function, denoted as H0. A lower H0 value indicates a stronger acid. For comparison, sulfuric acid has an H0 of −12. Perchloric acid is stronger, with an H0 of −13. Magic acid is significantly more powerful, reaching an H0 of −23. This makes it one of the most reactive liquids used in laboratory research. 
Scientists use magic acid to create and observe carbocations. A carbocation is a molecule that has a positive charge because it is missing electrons. These ions are often very unstable and difficult to study. Because magic acid has low nucleophilicity, it allows these ions to stay stable in a liquid. Some carbocations are "classical," meaning they have a simple structure where a carbon atom is surrounded by only six valence electrons. 

The history of magic acid is tied to several important scientific discoveries. The term "superacid" was first used in 1927 by James Bryant Conant. He observed that perchloric acid could protonate certain molecules in nonaqueous solutions. Later, in the 1960s, Ronald Gillespie and his team at McMaster University developed the magic acid system. They intended to use it to study stable carbocations. The name "magic acid" actually came from a 1966 Christmas party. A member of George Olah's lab placed a paraffin candle into the acid. The acid dissolved the candle rapidly, and researchers found that the wax had been broken down into a stable carbocation. 
Magic acid is also a powerful catalyst, which means it speeds up chemical reactions. It can catalyze the cleavage and rearrangement of tertiary hydroperoxides and tertiary alcohols. 

One surprising way magic acid works is by reacting with alkanes, which are usually very stable. For example, methane can react with magic acid at 140 °C to form the methonium ion. 

Because magic acid is so reactive, it must be handled with extreme caution. It is highly toxic if inhaled or swallowed. It also causes severe burns to the skin and eyes and is harmful to aquatic life. Scientists must wear specific personal protective equipment when working with it. This includes gloves, goggles, a full-face shield, and a respirator. These safety measures are necessary to protect researchers from the acid's intense chemical power.
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