This is a special metal. 

This is a special metal. 


Plutonium is a silvery-gray metal. 


Scientists first made plutonium in 1940 and 1941. They used a machine called a cyclotron. They named it after the planet Pluto. 
Plutonium has many forms called allotropes. These are different ways the atoms can be arranged. Some forms are hard and brittle like iron. Other forms are soft and easy to shape. This makes the metal hard to work with. Some types of plutonium are fissile. This means they can sustain a nuclear chain reaction. This makes them useful for nuclear reactors and weapons.
Plutonium is a unique chemical element with the symbol Pu and atomic number 94. 


This metal has many different forms called allotropes. An allotrope is a way that the atoms inside the metal are arranged. 
Scientists first made plutonium in late 1940 and early 1941. 
There are many different versions of plutonium called isotopes. 

Plutonium is a very important part of how we understand energy. While most plutonium is made in special reactors, tiny amounts can be found in nature. These small amounts appear in uranium deposits when uranium atoms capture neutrons. 
Plutonium is a heavy, silvery-gray chemical element with the symbol Pu and atomic number 94. 


One of the most unusual things about plutonium is its many allotropes. An allotrope is a different structural form of the same element.
Plutonium is also chemically very reactive. It reacts with several substances, including carbon, halogens, nitrogen, silicon, and hydrogen. If the metal is exposed to moist air, it forms oxides and hydrides. This chemical reaction can cause the metal to expand by up to 70% in volume. As it expands, the surface can flake off into a fine powder. This powder is pyrophoric, which means it can catch fire spontaneously. 
Scientists first discovered plutonium through a complex process of synthesis. In late 1940 and early 1941, a team at the University of California, Berkeley, used a cyclotron to create it. They bombarded uranium-238 with deuterons to produce neptunium-238. This neptunium then underwent beta decay to become plutonium-238. The team named the element after the planet Pluto, following the naming patterns of uranium and neptunium. Because of the secrecy of World War II, they could not publish their findings until 1948. 
There are many different isotopes, or versions, of plutonium. 

The quality of plutonium is determined by its isotopic composition. Scientists categorize it into different grades based on the percentage of plutonium-240 it contains. Plutonium-240 has a high rate of spontaneous fission, which increases the neutron flux. This high neutron level can cause a weapon to detonate too early. Weapons-grade plutonium contains less than 7% plutonium-240. Fuel-grade contains between 7% and 19%, and reactor-grade contains 19% or more. Supergrade plutonium contains less than 4% and is used in specific Navy weapons.
While most plutonium is manufactured in specialized reactors, it can occur naturally in tiny amounts. In uranium deposits, uranium-238 can capture neutrons to create trace amounts of plutonium. Some scientists believe that heavy isotopes like plutonium-244 might have existed since the Earth was formed. However, current experiments are not yet sensitive enough to detect these primordial traces. Today, the management of plutonium waste from power plants and dismantled weapons is a major environmental and safety concern.
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