Return to Scale View
Logo

About Login
About

Share This Page

Whatsapp

Whatsapp

Facebook

Facebook

Twitter

Twitter

Reddit

Reddit

Email

Email

How big is a Buckyball?

1 nanometer!

View History Report
Buckyball

A buckyball is a molecule of 60 carbon atoms joined into a closed, ball-shaped cage, with the same pattern as a soccer ball. Its full name is buckminsterfullerene, and its formula is C60. It is about 1 nanometer across, measured as the distance between the centers of neighboring buckyballs packed together in a solid. A nanometer is a billionth of a meter.

Size

The 60 carbon atoms sit on the surface of the cage, which is hollow. Its discoverers later found carbon cages with metal atoms trapped inside. The cage of carbon atoms itself is 0.71 nanometers across.

A molecule has no hard edge, because the electrons around its atoms reach beyond their centers. So each buckyball takes up more room than its cage of atoms. In crystals of solid C60, the centers of neighboring molecules are 1.0 nanometers apart. The explorer's figure of 1 nanometer matches that spacing.

The cage has 20 six-sided faces and 12 five-sided faces. A soccer ball's panels follow the same pattern. So does the geodesic dome that the American architect R. Buckminster Fuller designed for the 1967 world's fair in Montreal, and the molecule is named after him.

Size comparisons

  • About 80,000–100,000 buckyballs side by side would span a human hair, which is 0.08–0.1 millimeters wide.
  • A soccer ball is about 220 million times as wide as a buckyball. A soccer ball enlarged by that same factor would be about 48,000 kilometers (30,000 miles) across, nearly four times as wide as Earth.
  • Two cesium atoms, among the largest atoms, would span a buckyball side by side.

How buckyballs were discovered

Robert Curl, Harold Kroto and Richard Smalley discovered buckyballs in 1985, working with graduate students J. R. Heath and S. C. O'Brien. They fired an intense pulse of laser light at a carbon surface and mixed the freed carbon atoms with a stream of helium gas. The atoms joined into clusters, and clusters of 60 atoms were the most common. Their stability suggested a highly symmetrical shape.

In 1990, the physicists W. Krätschmer and D. R. Huffman made C60 in amounts large enough to collect. Studying it confirmed the ball-shaped structure. Curl, Kroto and Smalley shared the 1996 Nobel Prize in Chemistry for the discovery of fullerenes, the family of closed carbon cages that buckyballs belong to.

Buckyballs in space

Kroto joined the experiment to learn how chain-shaped carbon molecules he had found in the atmospheres of carbon-rich giant stars might form. Soon after the discovery, scientists proposed that buckyballs might float around such stars. In 2010, NASA's Spitzer Space Telescope found convincing signs of them in space for the first time.

Spitzer found buckyballs in Tc 1, a cloud of material shed by a dying star. The star was once like the Sun, but as it aged it shed its outer layers. Astronomers think the buckyballs formed in the shed layers of carbon.

Sources

  • Press release: The Nobel Prize in Chemistry 1996. Royal Swedish Academy of Sciences, 1996.
  • Raman Spectroscopy of Fullerenes: From C60 to Functionalized Derivatives. Qin et al., Molecules, 2025.
  • Thermally Activated Sliding of C60 on Gold. Pierno et al., ACS Omega, 2025.
  • Strain-Relief Patterns and Kagome Lattice in Self-Assembled C60 Thin Films Grown on Cd(0001). Wang et al., International Journal of Molecular Sciences, 2021.
  • Space Balls (Artist's Concept). NASA Jet Propulsion Laboratory, 2010.
  • Law 2: The Ball. International Football Association Board.
  • Earth Fact Sheet. NASA, 2024.
  • Cesium. PubChem, National Library of Medicine.
  • Just How Small Is "Nano"?. National Nanotechnology Initiative.

Newsletter! 🚀

Be the first to get exclusive offers and the latest news

Submit
ابعاد جهان > Buckyball
Glucose Molecule
Glucose is a simple sugar. Plants make glucose through photosynthesis and turn it into complex sugars. When we (as humans) eat plants or animals that have eaten plants, we eat complex sugars, which we break down into glucose again, which we use for energy.
X-Ray Wavelength
Although X-rays do not have the highest frequency, it's still a bad idea to bask in them. Don't do it! Usually, you should have a lead shield. The thicker the lead is, the more protection. However, a few X-rays will always get through. Thicker lead just lowers this chance.
Cesium Atom
Atom size is measured by the distance of the nuclei in covalent bonds. The shells don't actually look like this. Cesium is the largest atom, but its atomic number is not the highest. Why? See Helium Atom.
Alpha Helix
The alpha helix is one of the secondary structures of proteins. Many proteins have alpha helices within them. Hemoglobin and myoglobin are proteins that are made of about 70% alpha helices!
DNA
DNA, which is a nucleic acid, stores the genetic information of almost all living things on Earth (except for some viruses.) A single human cell contains 3 meters of deoxyribonucleic acid, which holds about 25,000 genes in about 3 billion base pairs.
Phospholipid
Phospholipids are beautifully amazing little molecules, and you have millions of millions of millions of them in your body. Phospholipids are actually a special type of lipid that make up cell membranes.

Discussion

Logo

Scale Of Universe

Contact Discord

Stay up to date

Subscribe

© 2026 Scale of Universe. All rights reserved.