Log in Sign up
Back to Discover
⚛️

Disodium helide

physical science Maturity 11-13

Some things are made of two parts. One part is helium. The other part is sodium. They stay together under high pressure. This new thing is clear. It can even be an insulator. Can you find helium in a balloon?

40 words

Some things are made of two parts. One part is helium. The other part is sodium. They stay together under high pressure. This means they need a lot of squeezing.

Scientists made this in 2016. They used tiny plates of sodium. They also used helium. They used a laser to heat them.

This new thing is clear. It does not let electricity flow. It can stay in this form. It stays even when pressure is low.

It melts at a very high heat. This is much hotter than sodium. It has a special shape. It looks like a cube.

It is a very rare find. It is a new kind of matter.

112 words

Scientists found a new way to join two elements. One is helium. The other is sodium. They made this in 2016. It is called disodium helide. This substance needs high pressure to stay together. High pressure means a lot of squeezing.

To make it, they used a diamond anvil cell. This tool squeezes things very hard. They put tiny plates of sodium and helium inside. Then they used a laser to heat them. This made the parts join.

Disodium helide is a special kind of matter. It is an electride. This means it has loose electrons. These electrons sit in small spaces. The substance is clear. It is also an insulator. An insulator does not let electricity flow easily.

This material has a cubic crystal structure. This means its tiny parts look like cubes. It looks like a mineral called fluorite. It stays in this shape even when you stop squeezing. It melts at a very high heat. This heat is much higher than the melting point of sodium. It is a very rare find.

175 words

Scientists found a new way to join two elements. This material is called disodium helide. It is a compound made of helium and sodium. This substance is very special because it stays stable under high pressure. It is also an electride. An electride is a material with loose electrons. These electrons sit in small spaces inside the structure. This material is predicted to be transparent. It is also an insulator. An insulator does not let electricity flow through it easily.

Making this substance is a very hard job. Scientists use a tool called a diamond anvil cell. They put tiny plates of sodium inside the cell. Then they add helium to the cell. They squeeze the plates with huge pressure. They also use a laser to heat the mixture. This heat and pressure help the parts join together. The material stays together at high pressure. If the pressure drops too low, it will break apart.

Researchers used math to find this material first. They used a tool called the USPEX algorithm. This tool helps predict crystal structures. After the math, they made the real material in 2016. It was predicted to be stable at a certain pressure. It was also predicted to be stable over a certain range. This was a big step for science. It showed that helium can join with other elements.

Disodium helide has many interesting facts. It has a cubic crystal structure. This shape looks like a mineral called fluorite. The edge of one unit cell is 4.23 Angstroms. Each unit cell has four helium atoms. It also has eight sodium atoms. The material melts at a very high temperature. This heat is much higher than the melting point of sodium. It can keep its shape down to 100 gigapascals. This is a very high amount of pressure.

Think about how things change under pressure. When you squeeze things, they often change shape. In this material, the atoms move closer together. The helium atoms shrink a little bit. This helps the energy stay balanced. The sodium atoms gain a positive charge. The helium atoms lose a negative charge. This process creates the special electron spaces. It is a unique way for matter to work. You can imagine it like a tiny, crowded room. Everything must fit perfectly to stay stable.

389 words

Disodium helide is a unique chemical compound. It is made from two elements: helium and sodium. Usually, helium is a gas that does not like to react with other things. However, under extreme pressure, these elements can form a stable substance. This compound is very important to science. It helps us understand how matter behaves in extreme environments. It is also classified as an electride. An electride is a special type of material. In an electride, electrons are not stuck to specific atoms. Instead, they sit in the empty spaces within the crystal structure.

To create this material, scientists must follow a specific process. They use a device called a diamond anvil cell. This tool can squeeze materials with incredible force. First, they place tiny plates of sodium inside the cell. Next, they add helium to the chamber. The scientists then compress the mixture to reach very high pressures. They also use a laser to heat the materials. This combination of intense heat and pressure allows the helium and sodium to join. The resulting material is predicted to be an insulator. This means it does not easily allow electricity to flow through it. It is also expected to be transparent.

The structure of disodium helide is very organized. It has a cubic crystal structure. This shape is very similar to a mineral called fluorite. We can look at a single unit cell to understand it. A unit cell is the smallest repeating part of a crystal. The edge of this unit cell is 4.23 Angstroms long. Inside one unit cell, there are four helium atoms. These atoms sit on the faces and the corners of the cube. There are also eight sodium atoms in the cell. These atoms are located halfway between the center and each corner.

One of the most fascinating parts of this compound is the electrons. In disodium helide, electron pairs sit on each edge and at the center of the unit cell. These electrons are spin paired. Because these electrons exist in isolated spaces, the material is called a disodium helium electride. The helium atoms do not actually participate in the chemical bonding. Instead, the electron pairs act as an eight-centre two-electron bond. This is a very complex way for atoms to hold a structure together. As pressure increases, the density of these free electrons also increases. This happens as the sodium atoms gain more positive charge. Meanwhile, the helium atoms lose some of their negative charge.

Scientists did not find this material by accident. They used a computer tool called the USPEX crystal structure prediction algorithm. This algorithm helps predict how atoms might arrange themselves. The math predicted that disodium helide would be stable at high pressures. It also predicted the material would be thermodynamically and dynamically stable. Following these mathematical predictions, researchers successfully synthesized the material in 2016. This was a major achievement in chemistry. It proved that the computer models were correct about how helium could behave.

Disodium helide is notable because of its stability compared to other elements. It is predicted to be stable at a lower pressure than other helium compounds. For example, a compound made of helium and potassium would require much higher pressures. Those pressures would be in the range of terapascals. Disodium helide also has a very high melting point. It melts at a temperature near 5000 Kelvin. This is much hotter than the melting point of pure sodium. Even when pressure is reduced, the material is quite tough. It can keep its form at pressures as low as 100 gigapascals.

This discovery connects to many different areas of science. It helps researchers study how atoms change when they are squeezed together. As the pressure changes, the helium atoms actually shrink. This shrinking helps compensate for the energy changes in the system. This research tells us more about the limits of chemical bonding. It shows that even the most stubborn elements like helium can change under the right conditions. By studying these high-pressure phases, scientists learn about the fundamental rules of the physical world.

683 words
Up Next
⚛️
Helium compounds
Physical Science
More to explore

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.