Chemical Element Symbols Copy and Paste
Every one of the 118 elements is listed below in atomic number order with its official IUPAC symbol. Click a symbol to copy it, then paste it into a lab report, a spreadsheet, a slide or a homework answer.
Element symbols themselves are ordinary Latin letters, so they paste cleanly anywhere. The characters that usually cause trouble are the ones around them: the subscript in H₂O, the superscript charge in SO₄²⁻, the equilibrium arrow ⇌ and the degree sign. Those are all here too, as real Unicode characters rather than formatting.
The tables give the element name, the symbol and the atomic number, with a short note where the symbol is not obvious from the English name (Fe from ferrum, Au from aurum, W from wolfram, and the rest of the awkward eleven).
Most copied
Elements 1 to 20: hydrogen to calcium
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Hydrogen | H | 1 | |
| Helium | He | 2 | |
| Lithium | Li | 3 | |
| Beryllium | Be | 4 | |
| Boron | B | 5 | |
| Carbon | C | 6 | |
| Nitrogen | N | 7 | |
| Oxygen | O | 8 | |
| Fluorine | F | 9 | |
| Neon | Ne | 10 | |
| Sodium | Na | 11 | |
| Magnesium | Mg | 12 | |
| Aluminium | Al | 13 | |
| Silicon | Si | 14 | |
| Phosphorus | P | 15 | |
| Sulfur | S | 16 | |
| Chlorine | Cl | 17 | |
| Argon | Ar | 18 | |
| Potassium | K | 19 | |
| Calcium | Ca | 20 |
Elements 21 to 40: scandium to zirconium
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Scandium | Sc | 21 | |
| Titanium | Ti | 22 | |
| Vanadium | V | 23 | |
| Chromium | Cr | 24 | |
| Manganese | Mn | 25 | |
| Iron | Fe | 26 | |
| Cobalt | Co | 27 | |
| Nickel | Ni | 28 | |
| Copper | Cu | 29 | |
| Zinc | Zn | 30 | |
| Gallium | Ga | 31 | |
| Germanium | Ge | 32 | |
| Arsenic | As | 33 | |
| Selenium | Se | 34 | |
| Bromine | Br | 35 | |
| Krypton | Kr | 36 | |
| Rubidium | Rb | 37 | |
| Strontium | Sr | 38 | |
| Yttrium | Y | 39 | |
| Zirconium | Zr | 40 |
Elements 41 to 60: niobium to neodymium
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Niobium | Nb | 41 | |
| Molybdenum | Mo | 42 | |
| Technetium | Tc | 43 | |
| Ruthenium | Ru | 44 | |
| Rhodium | Rh | 45 | |
| Palladium | Pd | 46 | |
| Silver | Ag | 47 | |
| Cadmium | Cd | 48 | |
| Indium | In | 49 | |
| Tin | Sn | 50 | |
| Antimony | Sb | 51 | |
| Tellurium | Te | 52 | |
| Iodine | I | 53 | |
| Xenon | Xe | 54 | |
| Caesium | Cs | 55 | |
| Barium | Ba | 56 | |
| Lanthanum | La | 57 | |
| Cerium | Ce | 58 | |
| Praseodymium | Pr | 59 | |
| Neodymium | Nd | 60 |
Elements 61 to 80: promethium to mercury
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Promethium | Pm | 61 | |
| Samarium | Sm | 62 | |
| Europium | Eu | 63 | |
| Gadolinium | Gd | 64 | |
| Terbium | Tb | 65 | |
| Dysprosium | Dy | 66 | |
| Holmium | Ho | 67 | |
| Erbium | Er | 68 | |
| Thulium | Tm | 69 | |
| Ytterbium | Yb | 70 | |
| Lutetium | Lu | 71 | |
| Hafnium | Hf | 72 | |
| Tantalum | Ta | 73 | |
| Tungsten | W | 74 | |
| Rhenium | Re | 75 | |
| Osmium | Os | 76 | |
| Iridium | Ir | 77 | |
| Platinum | Pt | 78 | |
| Gold | Au | 79 | |
| Mercury | Hg | 80 |
Elements 81 to 100: thallium to fermium
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Thallium | Tl | 81 | |
| Lead | Pb | 82 | |
| Bismuth | Bi | 83 | |
| Polonium | Po | 84 | |
| Astatine | At | 85 | |
| Radon | Rn | 86 | |
| Francium | Fr | 87 | |
| Radium | Ra | 88 | |
| Actinium | Ac | 89 | |
| Thorium | Th | 90 | |
| Protactinium | Pa | 91 | |
| Uranium | U | 92 | |
| Neptunium | Np | 93 | |
| Plutonium | Pu | 94 | |
| Americium | Am | 95 | |
| Curium | Cm | 96 | |
| Berkelium | Bk | 97 | |
| Californium | Cf | 98 | |
| Einsteinium | Es | 99 | |
| Fermium | Fm | 100 |
Elements 101 to 118: mendelevium to oganesson
| Element | Symbol | Atomic number | Copy |
|---|---|---|---|
| Mendelevium | Md | 101 | |
| Nobelium | No | 102 | |
| Lawrencium | Lr | 103 | |
| Rutherfordium | Rf | 104 | |
| Dubnium | Db | 105 | |
| Seaborgium | Sg | 106 | |
| Bohrium | Bh | 107 | |
| Hassium | Hs | 108 | |
| Meitnerium | Mt | 109 | |
| Darmstadtium | Ds | 110 | |
| Roentgenium | Rg | 111 | |
| Copernicium | Cn | 112 | |
| Nihonium | Nh | 113 | |
| Flerovium | Fl | 114 | |
| Moscovium | Mc | 115 | |
| Livermorium | Lv | 116 | |
| Tennessine | Ts | 117 | |
| Oganesson | Og | 118 |
Chemistry symbols and hazard signs
Click to copy. These are the non-letter characters that turn up in equations, lab reports and safety labels.
Reference table Unicode, HTML entity, ALT code and CSS escape
| Symbol | Name | Unicode | HTML | ALT code | CSS | Copy |
|---|---|---|---|---|---|---|
| ° | degree sign (temperature and angles, as in 25 °C) | U+00B0 | ° | ALT 176 | \00B0 | |
| ℃ | degree Celsius (single character for °C) | U+2103 | ℃ | ALT 8451 | \2103 | |
| ℉ | degree Fahrenheit (single character for °F) | U+2109 | ℉ | ALT 8457 | \2109 | |
| Å | angstrom (0.1 nanometre, used for bond lengths) | U+00C5 | Å | ALT 197 | \00C5 | |
| µ | micro sign (the micro prefix, one millionth) | U+00B5 | µ | ALT 181 | \00B5 | |
| Ω | ohm (unit of electrical resistance) | U+03A9 | Ω | ALT 937 | \03A9 | |
| ‰ | per mille (parts per thousand, used for isotope ratios) | U+2030 | ‰ | ALT 8240 | \2030 | |
| ⚛ | atom symbol (stylised atom with electron orbits) | U+269B | ⚛ | ALT 9883 | \269B | |
| ⚗ | alembic (the classic distillation flask) | U+2697 | ⚗ | ALT 9879 | \2697 | |
| ☢ | radioactive sign (ionising radiation hazard) | U+2622 | ☢ | ALT 9762 | \2622 | |
| ☣ | biohazard sign (biological hazard) | U+2623 | ☣ | ALT 9763 | \2623 | |
| ⚕ | staff of Aesculapius (medical and pharmacy contexts) | U+2695 | ⚕ | ALT 9877 | \2695 | |
| ⇌ | equilibrium arrow (reversible reaction, forward over reverse) | U+21CC | ⇌ | ALT 8652 | \21CC | |
| ⇋ | reverse equilibrium arrow (the mirrored harpoon pair) | U+21CB | ⇋ | ALT 8651 | \21CB | |
| → | rightwards arrow (yields, the standard reaction arrow) | U+2192 | → | ALT 8594 | \2192 | |
| ⟶ | long rightwards arrow (reaction arrow with room for conditions above it) | U+27F6 | ⟶ | ALT 10230 | \27F6 | |
| ⇄ | rightwards arrow over leftwards arrow (alternative reversible reaction arrow) | U+21C4 | ⇄ | ALT 8644 | \21C4 | |
| ↑ | upwards arrow (gas evolved, as in CO₂↑) | U+2191 | ↑ | ALT 8593 | \2191 | |
| ↓ | downwards arrow (precipitate formed, as in AgCl↓) | U+2193 | ↓ | ALT 8595 | \2193 | |
| ∆ | increment (heat applied, written over the reaction arrow) | U+2206 | ∆ | ALT 8710 | \2206 | |
| Δ | Greek capital delta (change in a quantity, as in ΔH) | U+0394 | Δ | ALT 916 | \0394 | |
| · | middle dot (separates the water in a hydrate, CuSO₄·5H₂O) | U+00B7 | · | ALT 183 | \00B7 | |
| ≡ | identical to (triple bond in line notation) | U+2261 | ≡ | ALT 8801 | \2261 | |
| √ | square root (turns up in rate and equilibrium maths) | U+221A | √ | ALT 8730 | \221A |
Subscripts and superscripts for formulas and ions
Real Unicode characters, so they survive being pasted into plain text, spreadsheets and chat.
Reference table Unicode, HTML entity, ALT code and CSS escape
| Symbol | Name | Unicode | HTML | ALT code | CSS | Copy |
|---|---|---|---|---|---|---|
| ₀ | subscript zero | U+2080 | ₀ | ALT 8320 | \2080 | |
| ₁ | subscript one | U+2081 | ₁ | ALT 8321 | \2081 | |
| ₂ | subscript two (as in H₂O) | U+2082 | ₂ | ALT 8322 | \2082 | |
| ₃ | subscript three (as in NH₃) | U+2083 | ₃ | ALT 8323 | \2083 | |
| ₄ | subscript four (as in CH₄) | U+2084 | ₄ | ALT 8324 | \2084 | |
| ₅ | subscript five | U+2085 | ₅ | ALT 8325 | \2085 | |
| ₆ | subscript six (as in C₆H₁₂O₆) | U+2086 | ₆ | ALT 8326 | \2086 | |
| ₇ | subscript seven | U+2087 | ₇ | ALT 8327 | \2087 | |
| ₈ | subscript eight | U+2088 | ₈ | ALT 8328 | \2088 | |
| ₉ | subscript nine | U+2089 | ₉ | ALT 8329 | \2089 | |
| ₊ | subscript plus | U+208A | ₊ | ALT 8330 | \208A | |
| ₋ | subscript minus | U+208B | ₋ | ALT 8331 | \208B | |
| ₍ | subscript left parenthesis | U+208D | ₍ | ALT 8333 | \208D | |
| ₎ | subscript right parenthesis | U+208E | ₎ | ALT 8334 | \208E | |
| ⁰ | superscript zero | U+2070 | ⁰ | ALT 8304 | \2070 | |
| ¹ | superscript one | U+00B9 | ¹ | ALT 185 | \00B9 | |
| ² | superscript two (as in Ca²⁺) | U+00B2 | ² | ALT 178 | \00B2 | |
| ³ | superscript three (as in PO₄³⁻) | U+00B3 | ³ | ALT 179 | \00B3 | |
| ⁴ | superscript four | U+2074 | ⁴ | ALT 8308 | \2074 | |
| ⁵ | superscript five | U+2075 | ⁵ | ALT 8309 | \2075 | |
| ⁶ | superscript six | U+2076 | ⁶ | ALT 8310 | \2076 | |
| ⁷ | superscript seven | U+2077 | ⁷ | ALT 8311 | \2077 | |
| ⁸ | superscript eight | U+2078 | ⁸ | ALT 8312 | \2078 | |
| ⁹ | superscript nine | U+2079 | ⁹ | ALT 8313 | \2079 | |
| ⁺ | superscript plus (cation charge, as in Na⁺) | U+207A | ⁺ | ALT 8314 | \207A | |
| ⁻ | superscript minus (anion charge, as in Cl⁻) | U+207B | ⁻ | ALT 8315 | \207B |
No symbol on this page matches that search. Try a shorter word.
How element symbols are formed
An element symbol is one or two letters, occasionally three for the very newest. The first letter is always a capital and any letter after it is always lower case. That rule is not cosmetic: it is what lets a formula be read unambiguously. CO is carbon monoxide, one carbon and one oxygen, while Co is cobalt, a single atom of element 27.
Where the symbol has two letters, the second is normally the next distinctive letter of the name rather than simply the second letter, chosen to avoid a clash. Chlorine is Cl because C was already carbon. Magnesium is Mg and manganese is Mn because both start Ma.
Symbols are the same in every language. A German text writes Stickstoff for nitrogen and a French one writes azote, but both write N. That universality is exactly why IUPAC controls them.
- One capital letter only: H, B, C, N, O, F, P, S, K, V, Y, I, W, U.
- Capital plus lower case: He, Li, Be, Ne, Na, Mg, Al, Si, Cl, Ar, Ca and most of the rest.
- Never all caps. CO is a compound, Co is an element, and CO₂ written as Co₂ means something different and wrong.
- Isotopes put the mass number as a superscript in front: ¹⁴C, ²³⁵U, ³H.
The eleven symbols that come from Latin names
A handful of elements were known long before modern chemistry and kept symbols derived from their Latin (or in one case German) names. These are the ones students lose marks on, so they are worth learning as a set.
Tungsten is the odd one out in the list: W comes from wolfram, its German name, and much of the world still calls the element wolfram rather than tungsten.
- Fe, iron, from ferrum.
- Au, gold, from aurum.
- Ag, silver, from argentum.
- Cu, copper, from cuprum.
- Pb, lead, from plumbum (the same root as plumbing).
- Sn, tin, from stannum.
- Hg, mercury, from hydrargyrum, meaning water silver.
- Na, sodium, from natrium.
- K, potassium, from kalium.
- Sb, antimony, from stibium.
- W, tungsten, from wolfram.
Subscripts in formulas and superscripts on ions
In a chemical formula the number of atoms goes below the line: H₂O, CO₂, C₆H₁₂O₆, H₂SO₄, NaHCO₃. A subscript always applies to the symbol or bracketed group immediately before it, so Ca(OH)₂ has two hydroxide groups, not two hydrogens.
Charges go above the line, with the number before the sign: Na⁺, Cl⁻, Ca²⁺, SO₄²⁻, PO₄³⁻, Fe³⁺. A single charge is written as a bare plus or minus with no 1. Note the order in SO₄²⁻: subscript 4 for the four oxygens, then superscript 2 minus for the charge.
You can build these two ways. Paste the Unicode characters from the grids above, which keep working in plain text, file names, chat apps and spreadsheet cells, or use your editor's subscript formatting, which looks better in a typeset document but disappears the moment the text is copied somewhere plain. For anything that will be copied around, Unicode wins.
- Water: H₂O. Carbon dioxide: CO₂. Glucose: C₆H₁₂O₆. Ammonia: NH₃. Methane: CH₄.
- Sulfuric acid: H₂SO₄. Sodium bicarbonate: NaHCO₃. Calcium carbonate: CaCO₃.
- Common ions: Na⁺, K⁺, Ca²⁺, Mg²⁺, Fe²⁺, Fe³⁺, Cl⁻, OH⁻, NO₃⁻, SO₄²⁻, CO₃²⁻, PO₄³⁻.
- Hydrates use a middle dot: CuSO₄·5H₂O.
Typing formulas in Word, Google Docs and Excel
In Microsoft Word, CTRL plus = turns subscript on and off, and CTRL plus SHIFT plus + does the same for superscript. Type H, toggle subscript, type 2, toggle it off, type O. Word also accepts the code point plus ALT + X, so typing 2082 then ALT + X gives ₂.
Google Docs uses CTRL plus comma for subscript and CTRL plus full stop for superscript (CMD on a Mac). Insert then Special characters also works, and its handwriting search box finds any symbol on this page.
Excel is the awkward one. Cell formatting can apply subscript to part of a text cell (Format Cells, then Font, then Subscript), but the formatting is lost as soon as the cell is used in a formula or exported to CSV. In a spreadsheet, paste the Unicode subscripts from this page instead: they are characters, so they survive sorting, formulas, filters and CSV export.
On a Mac anywhere, CTRL plus CMD plus SPACE opens the Character Viewer, where searching for subscript two finds ₂. On Windows, the emoji panel opens with the Windows key plus full stop and has a symbols tab.
Symbols beyond the letters: arrows, hazards and units
A balanced equation needs more than element symbols. The plain arrow → means yields, the double harpoon ⇌ means the reaction is reversible and at equilibrium, and conditions such as heat (∆) or a catalyst are written above the arrow. An up arrow after a product marks a gas leaving the mixture and a down arrow marks a precipitate.
Units bring their own characters: the degree sign in 25 °C (with a space before it in SI style), the micro sign µ for micromolar, the angstrom Å for bond lengths, the ohm Ω for resistance and the per mille sign ‰ for isotope ratios. The single-character forms ℃ and ℉ exist for compatibility, but a degree sign followed by a plain C is generally preferred in typesetting.
Safety labels use the trefoil ☢ for radioactivity and ☣ for biohazard. The atom symbol ⚛ and the alembic ⚗ are decorative rather than technical, and both are popular in titles, profiles and slide headers.
The newest elements and their names
The periodic table's seventh row was completed in 2016, when IUPAC approved names for the last four gaps. Nihonium (Nh, 113) is named for Nihon, one of the Japanese names for Japan, and was the first element discovered by a team in Asia. Moscovium (Mc, 115) and tennessine (Ts, 117) honour the Moscow region and the state of Tennessee, home to the laboratories involved. Oganesson (Og, 118) honours the physicist Yuri Oganessian, only the second element named after a living person.
Just before them came copernicium (Cn, 112) in 2010, flerovium (Fl, 114) and livermorium (Lv, 116) in 2012. All of these are synthesised an atom at a time in accelerators and decay in milliseconds or less, so their chemistry is barely explored.
Elements that have been claimed but not yet confirmed and named get a temporary systematic symbol built from their digits: element 119 would be ununennium, Uue, until it earns a real name. IUPAC naming convention now ends every group 17 element in -ine and every group 18 element in -on, which is why it is tennessine and oganesson.
Frequently asked questions
Why is iron Fe and not Ir?
Fe comes from ferrum, the Latin name for iron. Ir was taken by iridium. Ten other elements keep Latin or German symbols in the same way: Au, Ag, Cu, Pb, Sn, Hg, Na, K, Sb and W.
How do I type the subscript 2 in H₂O?
Click ₂ in the grid above to copy it, or press CTRL plus = in Word before typing the 2. In a spreadsheet or plain-text file, use the copied Unicode character: formatting-based subscript does not survive.
Does capitalisation in an element symbol matter?
Yes, completely. The first letter is capital and the second is lower case. CO is carbon monoxide while Co is cobalt, and writing CO₂ as co2 or CO2 changes or loses the meaning in any chemistry that is being marked.
How many elements are there, and how many occur naturally?
118 are named and confirmed. Elements 1 to 94 have all been found on Earth in nature, though technetium, promethium and several of the heaviest exist only in traces from decay. Elements 95 to 118 are made in accelerators.
What is the difference between atomic number and mass number?
The atomic number is the number of protons and defines which element it is, so carbon is always 6. The mass number is protons plus neutrons for one particular isotope, which is why carbon has ¹²C and ¹⁴C.
Can I paste these symbols into a spreadsheet or a database?
Yes. Element symbols are plain Latin letters, and the subscripts and superscripts are ordinary Unicode characters. As long as the file is saved as UTF-8, they survive CSV export, sorting and search.