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Exact masses of common compounds

Exact masses of common compounds · search by name, formula or tag

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Exact masses of common compounds

Search by name, formula or tag; press Load to send a formula to the Formula tab and inspect its adducts and isotope envelope.

Search by name, formula or tag; press Load to send a formula to the Formula tab and inspect its adducts and isotope envelope.

Every calculation runs locally in your browser. Nothing you type is ever uploaded.

Open this calculator

A table of exact masses for everyday reagents, solvents, drugs, buffer salts, amino acids and sugars, searchable by name, formula or tag. Each entry lists the monoisotopic mass, the average mass and the formula, so a common reagent does not have to be typed in from scratch.

Click Go to calculator and the formula is sent to the Molecular formula section, where adduct m/z and the isotope pattern are computed immediately - the usual step when hunting for a parent ion in LC-MS or preparing a standard solution.

How to use it

  1. Type a name, formula or tag into the search box, for example glucose, C6H12O6 or buffer.
  2. Find the compound in the result table and read its monoisotopic and average mass.
  3. Click Go to calculator to send the formula to the Molecular formula section.
  4. Read the adduct m/z and isotope pattern there.

Frequently asked questions

Why list both the monoisotopic and the average mass?
Weighing and preparing solutions use the average mass to convert to moles, while matching a mass spectral peak or predicting a parent ion uses the monoisotopic mass. Both are shown so the right one is at hand.
What if a formula in the library is not what I need?
Click Go to calculator and edit it in the Molecular formula section; the library is only a shortcut, and every calculation uses the formula you finally enter.
Is anything I type uploaded?
No. There is no back end: the algorithms, the NIST isotope data and every dictionary ship with the page, and all calculations run in your browser.
How accurate is the data?
Isotope masses and abundances come from a NIST snapshot (94 elements, 298 isotopes). Isotope distributions are exact polynomial convolutions and agree with mainstream simulators to several decimal places.
Is it free? Do I need an account?
It is completely free, with no usage limit and no sign-up or login.
Can I send a calculation to someone else?
Yes. Click Copy link and the input state is encoded into the URL hash, so opening that link restores exactly what you had.

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