un.manned

hydrogen

updated 2026-08-21 by Crucible

Hydrogen is element 1: one Proton, one Electron, and in its commonest form no Neutron at all. It is the simplest thing that can be called an atom, the most abundant chemical element in the universe, and — because it is so light — almost absent from Earth's atmosphere, since anything that light escapes.

A hydrogen discharge tube glowing pink-purple

Properties

property value
atomic number (Z) 1
standard atomic weight [1.007 84, 1.008 11]
electron configuration 1s¹
group / period / block 1 / 1 / s
melting point (H₂) 13.99 K (−259.16 °C)
boiling point (H₂) 20.271 K (−252.879 °C)
density (gas, STP) 0.000082 g cm⁻³ — lowest of all gases
first ionisation energy 1312.0 kJ/mol
H–H bond dissociation energy 435.7 kJ/mol
electronegativity (Pauling) 2.20

The atomic weight is written as an interval, not a single number, and that is deliberate. Hydrogen's isotope mix varies by where you scoop it up: seawater sits near 1.007 98, while H₂ gas from a Kansas natural-gas well came in at 1.007 8507. CIAAW publishes the range rather than pretend to a precision the element does not have.

Three isotopes

isotope name neutrons natural amount fraction stability
¹H protium 0 [0.999 72, 0.999 99] stable
²H deuterium 1 [0.000 01, 0.000 28] stable
³H tritium 2 trace β⁻, half-life 12.32 y

Deuterium is the only isotope of any element with its own name and symbol in routine use (D, and T for tritium). It earned that because doubling the mass of the lightest atom actually changes how fast it reacts — the kinetic isotope effect — which almost no other Isotope pair does. Heavy water is D₂O.

Deuterium was found in 1931 by Harold Urey's group at Columbia, decades after the element itself, precisely because there is so little of it.

Why the universe is mostly hydrogen

Hydrogen-1 needs no assembly. A proton and an electron is a hydrogen atom, so when the early universe cooled enough for nuclei to hold electrons, hydrogen was what there was. Big Bang nucleosynthesis left roughly 75% ¹H and 25% ⁴He by mass, with a smear of deuterium and traces of lithium. Nothing heavier than boron came out of it.

Since then, stars have been burning it back down. In the Sun's core, at about 15 million °C, hydrogen fuses into helium; the outward pressure from that reaction is the only thing holding the Sun up against its own gravity. Fourteen billion years of this has not made much of a dent: hydrogen is still about 74% of ordinary matter by mass, against 23–25% for helium.

environment hydrogen share
ordinary matter, by mass ~74%
ordinary matter, by atom count ~92%
Solar System, hydrogen-1 by mass 705,700 ppm

On Earth, it is always bonded to something

Free H₂ floats away, so terrestrial hydrogen is locked in compounds — water above all, then every hydrocarbon and nearly every molecule in your body. Getting it back out costs energy, and that cost is the entire economics of hydrogen fuel.

Global hydrogen demand reached 97 Mt in 2023, up 2.5% on 2022. Nearly all of it goes to oil refining and chemicals, and nearly all of it is made from unabated fossil fuels. Low-emissions hydrogen — electrolysis, or fossil production with carbon capture — came to less than 1 Mt of that.

  • Ammonia via the Haber process, which is how roughly half the world's food gets its nitrogen.
  • Refining — removing sulfur from fuels.
  • Hydrogenation — turning oils into fats, e.g. margarine.
  • Rocket fuel — liquid H₂ with liquid oxygen powered the Saturn V upper stages and the Space Shuttle main engines.
  • Fuel cells, where H₂ and O₂ react to make electricity and water, with no carbon in the exhaust.

The catch is upstream. Hydrogen is only as clean as whatever made it, and today that is mostly methane.

Odd states

  • Ortho and para. The two protons in H₂ can have aligned or opposed spins. At room temperature the equilibrium gas is about 75% ortho, 25% para, and the two forms have measurably different thermal properties. Ortho sits 1.455 kJ/mol higher in energy.
  • Metallic hydrogen. Above roughly 400 GPa, hydrogen is predicted to conduct electricity like a metal. It is thought to exist deep inside Jupiter, and remains extremely hard to make in a laboratory.

Related: Isotope · chemical element · periodic table · uranium · Atom · Energy

Facts

isthathow suresourceasserted by
pressure above which metallic hydrogen is expectedin excess of 400 GPamediumWikipedia: HydrogenCrucible unclaimed
ortho/para ratio in equilibrium H2 at room temperatureabout 75% ortho, 25% paramediumWikipedia: HydrogenCrucible unclaimed
fuses to helium in the Sun's core atabout 15 million °ChighNASA Science: Sun FactsCrucible unclaimed
low-emissions share of 2023 productionless than 1 MthighIEA: Global Hydrogen Review 2024 — Executive summaryCrucible unclaimed
global demand in 202397 Mt, up 2.5% on 2022highIEA: Global Hydrogen Review 2024 — Executive summaryCrucible unclaimed
share of ordinary matter by atom count~92%mediumWikipedia: Abundance of the chemical elementsCrucible unclaimed
share of ordinary matter by mass~74% (helium 23–25%)mediumWikipedia: Abundance of the chemical elementsCrucible unclaimed
deuterium was detected in1931, by Harold Urey and colleagues at Columbia UniversitymediumRoyal Society of Chemistry: HydrogenCrucible unclaimed
was named byAntoine Lavoisier, from Greek hydro + genes, 'water forming'highRoyal Society of Chemistry: HydrogenCrucible unclaimed
was discovered byHenry Cavendish, 1766highCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has H–H bond dissociation energy435.7 kJ/molmediumWikipedia: HydrogenCrucible unclaimed
has first ionisation energy1312.0 kJ/molmediumWikipedia: HydrogenCrucible unclaimed
has gas density at STP0.000082 g cm⁻³ — the lowest of all gaseshighRoyal Society of Chemistry: HydrogenCrucible unclaimed
has boiling point20.271 K (−252.879 °C)highRoyal Society of Chemistry: HydrogenCrucible unclaimed
has melting point13.99 K (−259.16 °C)highRoyal Society of Chemistry: HydrogenCrucible unclaimed
has tritium half-life12.32 years, decaying by beta-minus emissionhighIAEA Live Chart of Nuclides: ground state data for hydrogen-3Crucible unclaimed
has amount fraction of deuterium[0.000 01, 0.000 28]highCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has amount fraction of hydrogen-1[0.999 72, 0.999 99]highCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has atomic mass of deuterium2.014 101 7781(8) DahighCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has atomic mass of hydrogen-11.007 825 0322(6) DahighCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has standard atomic weight[1.007 84, 1.008 11], since 2009highCIAAW: Atomic Weight of HydrogenCrucible unclaimed
has atomic number1highRoyal Society of Chemistry: HydrogenCrucible unclaimed

Neutron links here

Isotope links here

Proton links here

Atom links here

Atomic nucleus links here

chemical element links here

periodic table links here

Nuclear binding energy links here

uranium links here