Molar mass

Molar mass, exact mass and elemental composition for any formula, compound or SMILES, with the isotope pattern, HRMS adducts and an elemental analysis check.

Formula or compound

Read as a formula
Examples:

Hydrates with · or *, charges as Fe3+ or SO4{2-}, labelled atoms as [13C] or D.

Molar mass

C20H27N5O5

Molecular formula

Molar mass417.466g/mol
Monoisotopic mass417.2012Da
Nominal mass417Da
Rings plus double bonds
10
Details
Monoisotopic mass
417.201219 Da
Average mass, unrounded
417.466000 g/molShown above to 3 decimals, the precision of the least precise standard atomic weight in the formula.
Mass defect
0.2012 Da
Atoms
57

Isotope pattern

M · C20H27N5O5 · most intense peak 417.2012

0255075100417.0417.5418.0418.5419.0419.5420.0420.5421.0421.5417.2012100%418.204124%419.20663.78%%mass (Da)
IonFormulam/z
C20H27N5O5 417.2012
C20H28N5O5+ 418.2085
C20H27N5NaO5+ 440.1904
C20H27KN5O5+ 456.1644
C20H31N6O5+ 435.2350
C20H29N5O52+ 209.6079
C20H27N5O5+ 417.2007
C20H26N5O5− 416.1939
C20H27ClN5O5− 452.1706
Peak list
Mass (Da)Relative intensityAbundance
417.20122100.00 %77.9848 %
418.2041423.96 %18.6845 %
419.206613.78 %2.9457 %
420.209060.447 %0.3486 %
421.211480.043 %0.0335 %

Elemental composition

ElementAtomsMass (g/mol)Mass %
C Carbon20240.22057.54
H Hydrogen2727.2166.52
N Nitrogen570.03516.78
O Oxygen579.99519.16

Elemental analysis

ElementCalcd (%)Found (%)Δ
C57.54——
H6.52——
N16.78——
Anal. Calcd for C20H27N5O5: C, 57.54; H, 6.52; N, 16.78.
How the masses are calculated

The molar mass sums the IUPAC standard atomic weights, using the conventional value for elements whose weight is given as an interval (hydrogen 1.008, carbon 12.011, sulfur 32.06). It is shown to the number of decimals of the least precise atomic weight in the formula, so CuSO4·5H2O gets two decimals because of sulfur; the unrounded value is under Details.

The monoisotopic mass uses the mass of the most abundant isotope of every element, the nominal mass its mass number. Labelled atoms, written [13C], D or T, count with their own nuclide mass and are taken as fully enriched. For an ion, one electron mass, 0.000 548 579 909 u, is subtracted per positive charge and added per negative charge.

How the isotope pattern is computed

Every element's natural isotope distribution is raised to its atom count by repeated squaring, and the element distributions are then convolved with each other. In centroid mode the isotopologues are grouped by nominal mass and each group is reported at its intensity-weighted mean m/z, which is what a mass spectrometer at ordinary resolution shows; this is exact apart from dropping contributions below 10−12 of the largest. Fine structure keeps isotopologues apart, merges those closer than 0.1 mDa and drops those below 10−8 of the largest, which resolves, for example, 34S from 13C2.

Adduct m/z values follow m/z = (M + adduct − z·me) / |z|. The copy button gives the line in the form the ACS journals print, for example “[M + H]+ Calcd for C8H11N4O2 195.0877”. The ACS guidelines ask that found and calculated m/z agree within 0.003 m/z units, the limit the found m/z check uses.

Elemental analysis

Calculated percentages are mass fractions from the standard atomic weights. Journals ask for found values within ±0.4 % (absolute) of the calculated ones. If a sample holds solvent, enter it as a solvate, for example 0.5 × H2O, and the calculated values are for C8H10N4O2·0.5H2O.

Sources

Standard atomic weights: IUPAC Commission on Isotopic Abundances and Atomic Weights, “Standard atomic weights of the elements 2021”, Pure Appl. Chem. 94, 573 (2022). Isotope masses and natural abundances: NIST, Atomic Weights and Isotopic Compositions for All Elements (Standard Reference Database 144). Electron mass: CODATA 2018, Rev. Mod. Phys. 93, 025010 (2021). Reporting criteria: ACS Author Guidelines for The Journal of Organic Chemistry and Organic Letters.