Log in Sign up
Back to Discover
⚛️

Ruthenium

physical science Maturity 7-9

Ruthenium is a rare metal.

Ruthenium crystals.jpg
Ruthenium crystals.jpg
It is very hard. It does not change easily. We use it in parts for tools. It helps make things strong. Do you like metals?

32 words

Ruthenium is a rare metal.

Ruthenium crystals.jpg
Ruthenium crystals.jpg

It is a hard, white metal. It does not change easily when it touches chemicals. This makes it very useful.

We use it in many things. It helps make electrical parts stay strong. It can also make other metals harder.

People find this metal in the ground. It is often found in mountains. It is also in places like South Africa.

Scientists found it a long time ago. A man named Karl Claus found it in 1844. It is a very special metal.

90 words

Ruthenium is a rare and hard white metal.

Ruthenium crystals.jpg
Ruthenium crystals.jpg
It belongs to a group called the platinum group. Most metals in this group do not react easily with chemicals. This means ruthenium stays stable.

A scientist named Karl Ernst Claus found it in 1844. He named it after Russia. We find this metal in the earth's crust. It is often found in the Ural Mountains. It is also in North and South America. Some is found in South Africa and Canada.

People use ruthenium in many ways. It helps make electrical parts that resist wear. It can also make other metals like platinum harder. It is used in special parts for computer chips.

Grubbs catalyst Gen2.svg
Grubbs catalyst Gen2.svg

Ruthenium can also be used as a catalyst. A catalyst is something that helps a chemical change happen. One famous tool is called Grubbs' catalyst.

Grubbs catalyst Gen2.svg
Grubbs catalyst Gen2.svg
This tool helps make new kinds of plastics. Scientists use ruthenium to make many different chemical parts.
Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
Tris(bipyridine)ruthenium(II)-chloride-powder.jpg

163 words

Ruthenium is a rare and hard white metal.

Ruthenium crystals.jpg
Ruthenium crystals.jpg
It is part of the platinum group of metals. This group includes metals that do not react easily with most chemicals. Because it is so stable, it is very useful for many jobs. It is a transition metal with the atomic number 44. People find it in very small amounts in the Earth's crust. It is the 78th most common element on our planet.

Finding ruthenium involves a careful process of extraction. It is often found as a small part of platinum ores. Miners find it in places like the Ural Mountains. It is also found in North and South America. Some is found in South Africa and in Sudbury, Ontario.

Ruthenium crystals.jpg
Ruthenium crystals.jpg
To get the metal, scientists often process nickel or copper ores. They use a method called electrorefining to collect it. This creates a material called anode mud that holds the metal.

A scientist named Karl Ernst Claus discovered ruthenium in 1844. He worked at Kazan State University. He named the metal after Russia. He used the Latin name for Russia, which is Ruthenia. This is how the element got its special name. Since then, people have learned much more about it. We now know how to use it in many high-tech ways.

Today, ruthenium is used in many important tools. Most of it goes into electrical contacts that resist wear. It is also used in thick-film resistors.

Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
A new use is as a layer for parts in semiconductor lithography. This helps make computer chips. It can also be added to platinum to make it harder. Small amounts of ruthenium can even help titanium resist corrosion.

Ruthenium is also very important in chemistry as a catalyst. A catalyst is something that helps a chemical change happen.

Grubbs catalyst Gen2.svg
Grubbs catalyst Gen2.svg
One famous example is Grubbs' catalyst. This tool is used in reactions called alkene metathesis. This process can help create new kinds of plastics.
Polynbornene.svg
Polynbornene.svg
Scientists also use ruthenium to make many different chemical parts. It is a truly versatile metal for modern science.

346 words

Ruthenium is a rare transition metal with the symbol Ru and atomic number 44. It belongs to the platinum group, a set of metals known for being unreactive to most chemicals.

Ruthenium crystals.jpg
Ruthenium crystals.jpg
This stability makes it highly valuable for specialized industrial uses. While it is a hard, white metal, it is quite uncommon in nature. It is the 78th most abundant element in the Earth's crust. It exists in concentrations of about 100 parts per trillion. Because it is so rare, it is often extracted as a by-product of other mining operations.

Ruthenium is typically found as a minor component within platinum ores. Geologically, it appears in the Ural Mountains and across North and South America. It is also found in pyroxenite deposits in South Africa. Some commercially important amounts come from pentlandite in Sudbury, Ontario, Canada. The composition of these ores varies by location. For instance, platinum group metals from South Africa average 11% ruthenium. In contrast, those from the former USSR average only 2%.

Ruthenium crystals.jpg
Ruthenium crystals.jpg

Extracting the metal requires a complex chemical process. It is often recovered during the electrorefining of copper and nickel. During this process, noble metals precipitate as a substance called anode mud. To isolate ruthenium, scientists might use fusion with sodium peroxide. This is followed by dissolution in aqua regia, a mixture of acids. Ruthenium, osmium, and iridium are insoluble in aqua regia and precipitate out. Scientists then treat this residue with sodium oxide. This dissolves the ruthenium and osmium salts while leaving iridium behind. Finally, hydrogen is used to reduce ammonium ruthenium chloride into a metal powder or sponge.

History shows that ruthenium was discovered in 1844. The scientist Karl Ernst Claus found the element at Kazan State University. He was a Russian scientist of Baltic-German ancestry. Claus named the element in honor of Russia. He used the Latin name for Russia, which is Ruthenia. This naming tradition connects the element to its place of discovery. Since then, our understanding of its properties has grown significantly.

Ruthenium has several important physical and chemical characteristics. It is a polyvalent metal, meaning it can have many different oxidation states. These states range from -2 to +8. It is the only 4d transition metal that can reach the +8 oxidation state.

Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
Physically, it is usually paramagnetic at room temperature. However, a specific thin film version can be ferromagnetic. It does not tarnish under normal conditions. It only oxidizes when it is heated. It is also used to improve other metals. Adding small amounts of ruthenium can increase the hardness of platinum and palladium. It also markedly increases the corrosion resistance of titanium.

In modern industry, ruthenium serves many vital roles. Most of the produced metal is used for wear-resistant electrical contacts. It is also used in thick-film resistors. A newer application involves semiconductor lithography. Here, it acts as a capping layer for extreme ultraviolet photomasks. This helps in the production of advanced computer chips. Ruthenium is also used as a chemical catalyst.

Grubbs catalyst Gen2.svg
Grubbs catalyst Gen2.svg
A famous example is Grubbs' catalyst, which is used in alkene metathesis reactions.
Polynbornene.svg
Polynbornene.svg
This process can be used to create different types of polymers.

Ruthenium also has a connection to nuclear science. It is found in spent nuclear fuel as a fission product. It can also be produced through nuclear transmutation. This involves exposing a target to strong neutron radiation. Naturally occurring ruthenium consists of seven stable isotopes. These include isotopes 96, 98, 99, 100, 101, 102, and 104. Scientists have also discovered 34 synthetic radioactive isotopes. Some of these, like 106Ru, are fission products of uranium or plutonium. Understanding these isotopes helps scientists manage nuclear materials and study the environment.

614 words
🖼️ Images & Media (4)
File:Ruthenium crystals.jpg
Ruthenium crystals.jpg
File:Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
Tris(bipyridine)ruthenium(II)-chloride-powder.jpg
File:Grubbs catalyst Gen2.svg
Grubbs catalyst Gen2.svg
File:Polynbornene.svg
Polynbornene.svg
Up Next
⚛️
Palladium
Physical Science
More to explore

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.