Log in Sign up
Back to Discover
⚛️

Silicon dioxide

physical science Maturity 11-13

Sand is made of a special thing.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
It is in many places. It can also make glass. We use it to build big homes. It helps make things we use every day. Do you see sand at the beach?

41 words

Sand is made of a special thing.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
This thing is called silica. It is found in many places. It is the main part of most sand.
Si-OCage.svg
Si-OCage.svg

Silica can look different. It can be clear like glass. It can also be white. Some parts are even colorful.

a-quartz.png
a-quartz.png

We use silica to make glass. It is also used to build strong homes. Some plants even have it in them. This helps them stay safe from bugs. Silica is a part of our world.

85 words

Silica is a common material in our world.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
It is also called silicon dioxide. You can find it in most sand. It is also a main part of the Earth's crust.

Silica has many different forms. Some forms are crystalline. This means the tiny parts are in a neat pattern. Quartz is a common crystalline form.

Si-OCage.svg
Si-OCage.svg
Other forms, like opal, are amorphous. This means the parts do not have a neat pattern.

In most silica, one silicon atom sits in the middle. Four oxygen atoms surround it. These parts form a shape called a tetrahedron.

SiO2repeat.png
SiO2repeat.png

Humans use silica for many things. We melt it to make glass.

Fibreoptic.jpg
Fibreoptic.jpg
We also use it to make concrete for buildings. It helps make tiny parts for computers. Even your toothpaste uses silica to help clean teeth. Some plants even use silica to protect themselves from insects. It makes their leaves hard to eat.

154 words

Silicon dioxide is a very common material in our world.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
People often call it silica. It is a major part of the Earth's crust. You can find it in many places, like in sand.
a-quartz.png
a-quartz.png
It can appear as many different minerals. Most forms are white or colorless. However, some samples can have colors or look cloudy. It is a huge family of materials that includes both natural minerals and things humans make.

This material works by linking tiny atoms together.

Si-OCage.svg
Si-OCage.svg
In most forms, one silicon atom sits in the center. Four oxygen atoms surround that center atom. This shape is called a tetrahedron.
SiO2repeat.png
SiO2repeat.png
These shapes connect to form a three-dimensional network. Some silica is crystalline, which means the atoms follow a neat, repeating pattern. Other types are amorphous, which means the atoms do not have a regular pattern. Quartz is a common crystalline form, while opal is an amorphous form.

Nature creates different types of silica based on heat and pressure.

P-T Diagram for SiO2.svg
P-T Diagram for SiO2.svg
Quartz is the most stable form at room temperature. At high temperatures, minerals like tridymite and cristobalite can form. There are also forms made under high pressure, such as coesite and stishovite. Stishovite is much denser than quartz. It has a density of 4.287 grams per cubic centimeter. In contrast, alpha-quartz has a density of 2.648 grams per cubic centimeter. These changes happen because the atoms rearrange how they connect.

Humans use silica for many important jobs.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
About 95% of commercial silica is used in construction. It is a main ingredient in making concrete. Silica is also the primary ingredient for making glass. When molten silica cools very quickly, it becomes glass instead of a crystal.
Fibreoptic.jpg
Fibreoptic.jpg
We also use it to make optical fibers for telecommunications. In the world of technology, silica is used in semiconductors. It can protect the surfaces of tiny computer parts.

You can find silica in many things you use every day.

Kieselsaeure380m2prog.jpg
Kieselsaeure380m2prog.jpg
It is used in toothpaste as a hard abrasive to help clean teeth. Some powdered foods use it as an anti-caking agent to keep them flowing. It is even used in cosmetics to help spread light. In nature, some living things use it too. Diatoms use silica to build tiny shells. Some plants, like rice, contain silica. This can act as a defense to make leaves harder for insects to eat.

401 words

Silicon dioxide, often called silica, is a vital chemical compound with the formula SiO2. It is one of the most abundant and complex families of materials on Earth.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
In many regions, silica serves as the primary component of sand. It exists both as naturally occurring minerals and as various synthetic products. Most forms of silicon dioxide appear white or colorless. However, impurities can change its appearance to be opaque or colored. This substance is essential for modern life, serving as a fundamental ingredient in glass, construction materials, and microelectronics.
Si-OCage.svg
Si-OCage.svg

The way silicon dioxide works depends on its molecular structure. In most versions, the silicon atom exhibits tetrahedral coordination. This means one central silicon atom is surrounded by four oxygen atoms.

SiO2repeat.png
SiO2repeat.png
These atoms are held together by covalent bonds. Because these tetrahedra link together, they form massive three-dimensional network solids. This structure is quite different from carbon dioxide, which forms simple linear molecules. The difference in how these atoms bond is explained by the double bond rule. This atomic arrangement determines whether the material is crystalline or amorphous.
2D silica structure.png
2D silica structure.png

Scientists divide silicon dioxide into two main structural categories. Crystalline silica has a highly organized, repeating atomic pattern. This category includes minerals like quartz, tridymite, and cristobalite. High-temperature forms include tridymite and cristobalite, while high-pressure forms include coesite and stishovite.

P-T Diagram for SiO2.svg
P-T Diagram for SiO2.svg
Amorphous silica lacks this long-range repeating pattern. Natural examples of amorphous silica include opal and diatomaceous earth. Quartz glass represents an intermediate state between these two distinct structures. Even in different crystalline forms, the local arrangement of silicon and oxygen remains similar.

Polymorphism allows silica to change its form based on environmental conditions. Alpha-quartz is the most stable solid form at room temperature. However, the substance undergoes a transformation to beta-quartz at 573 °C. This change in temperature causes a significant change in volume. Such shifts can cause rocks or ceramics to fracture. High-pressure environments create much denser minerals like stishovite. Stishovite has a density of 4.287 g/cm3. In comparison, alpha-quartz has a density of only 2.648 g/cm3. This density increase happens because the silicon atom changes its coordination to six oxygen atoms.

stishovite.png
stishovite.png

Silicon dioxide plays a massive role in the Earth's geology and biology. Quartz alone makes up more than 10% of the Earth's crust by mass.

a-quartz.png
a-quartz.png
In the biological world, many organisms use silica for structure. Diatoms build shells called frustules from silica. Sponges use it to create spicules for their skeletons. Many plants, including rice, also contain silica. In these plants, silica forms structures called phytoliths. These can act as a defense mechanism against insects. High silica levels can accelerate tooth wear in animals that graze on these plants.

Human industry relies heavily on the unique properties of silica. About 95% of commercial silica is used in the construction industry. It is a key ingredient for producing Portland cement concrete. Silica is also the primary raw material for making glass.

Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
When molten silica is cooled rapidly, it solidifies as glass rather than a crystal. This material is also used to create optical fibers for telecommunications.
Fibreoptic.jpg
Fibreoptic.jpg
In the tech industry, silicon dioxide is critical for semiconductors. It is used for surface passivation to protect semiconductor elements. It also serves as a dielectric layer in microelectronics. This helps preserve the electrical characteristics of p-n junctions.

Beyond heavy industry, silica is found in many everyday consumer goods. Fumed silica is a white powder with an extremely low bulk density. It is often used as an anti-caking agent in powdered foods like spices.

Kieselsaeure380m2prog.jpg
Kieselsaeure380m2prog.jpg
It also helps keep pharmaceutical tablets formed correctly. In the cosmetic industry, silica provides light-diffusing properties. Hydrated silica is used as a hard abrasive in many toothpastes. Even in the food industry, colloidal silica acts as a fining agent for beer, juice, and wine. From the massive scale of the Earth's crust to the microscopic scale of computer chips, silica is everywhere.

658 words
🖼️ Images & Media (21)
File:SiO2repeat.png
SiO2repeat.png
File:Si-OCage.svg
Si-OCage.svg
File:Quartzrn.PNG
Quartzrn.PNG
File:P-T Diagram for SiO2.svg
P-T Diagram for SiO2.svg
File:Kieselsaeure380m2prog.jpg
Kieselsaeure380m2prog.jpg
File:Fibreoptic.jpg
Fibreoptic.jpg
File:Piasek kwarcowy.jpg
Piasek kwarcowy.jpg
File:a-quartz.png
a-quartz.png
File:b-quartz.png
b-quartz.png
File:a-tridymite.png
a-tridymite.png
File:b-tridymite.png
b-tridymite.png
File:a-cristobalite.png
a-cristobalite.png

+ 9 more

Up Next
⚛️
Silicate
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.