In
chemistry
Chemistry is the scientific study of the properties and behavior of matter. It is a physical science within the natural sciences that studies the chemical elements that make up matter and chemical compound, compounds made of atoms, molecules a ...
, the
mole fraction or molar fraction, also called mole proportion or molar proportion, is a
quantity defined as the
ratio
In mathematics, a ratio () shows how many times one number contains another. For example, if there are eight oranges and six lemons in a bowl of fruit, then the ratio of oranges to lemons is eight to six (that is, 8:6, which is equivalent to the ...
between the
amount of a constituent substance, ''n
i'' (expressed in
unit of
moles, symbol mol), and the total amount of all constituents in a mixture, ''n''
tot (also expressed in moles):
:
It is
denoted ''x
i'' (lowercase
Roman letter ''
x''), sometimes (lowercase
Greek letter
chi).
(For mixtures of gases, the letter ''y'' is recommended.
[)
It is a ]dimensionless quantity
Dimensionless quantities, or quantities of dimension one, are quantities implicitly defined in a manner that prevents their aggregation into unit of measurement, units of measurement. ISBN 978-92-822-2272-0. Typically expressed as ratios that a ...
with dimension
In physics and mathematics, the dimension of a mathematical space (or object) is informally defined as the minimum number of coordinates needed to specify any point within it. Thus, a line has a dimension of one (1D) because only one coo ...
of and dimensionless unit of moles per mole (mol/mol or molmol−1) or simply 1; metric prefixes may also be used (e.g., nmol/mol for 10−9).
When expressed in percent
In mathematics, a percentage () is a number or ratio expressed as a fraction of 100. It is often denoted using the ''percent sign'' (%), although the abbreviations ''pct.'', ''pct'', and sometimes ''pc'' are also used. A percentage is a dime ...
, it is known as the mole percent or molar percentage (unit symbol %, sometimes "mol%", equivalent to cmol/mol for 10−2).
The mole fraction is called amount fraction by the International Union of Pure and Applied Chemistry
The International Union of Pure and Applied Chemistry (IUPAC ) is an international federation of National Adhering Organizations working for the advancement of the chemical sciences, especially by developing nomenclature and terminology. It is ...
(IUPAC) and amount-of-substance fraction by the U.S. National Institute of Standards and Technology
The National Institute of Standards and Technology (NIST) is an agency of the United States Department of Commerce whose mission is to promote American innovation and industrial competitiveness. NIST's activities are organized into Outline of p ...
(NIST). This nomenclature is part of the International System of Quantities
The International System of Quantities (ISQ) is a standard system of Quantity, quantities used in physics and in modern science in general. It includes basic quantities such as length and mass and the relationships between those quantities. This ...
(ISQ), as standardized in ISO 80000-9, which deprecates "mole fraction" based on the unacceptability of mixing information with units when expressing the values of quantities.[
The sum of all the mole fractions in a mixture is equal to 1:
:
Mole fraction is numerically identical to the number fraction, which is defined as the number of particles (]molecule
A molecule is a group of two or more atoms that are held together by Force, attractive forces known as chemical bonds; depending on context, the term may or may not include ions that satisfy this criterion. In quantum physics, organic chemi ...
s) of a constituent ''Ni'' divided by the total number of all molecules ''N''tot.
Whereas mole fraction is a ratio of amounts to amounts (in units of moles per moles), molar concentration is a quotient of amount to volume (in units of moles per litre).
Other ways of expressing the composition of a mixture as a dimensionless quantity
Dimensionless quantities, or quantities of dimension one, are quantities implicitly defined in a manner that prevents their aggregation into unit of measurement, units of measurement. ISBN 978-92-822-2272-0. Typically expressed as ratios that a ...
are mass fraction and volume fraction
In chemistry and fluid mechanics, the volume fraction \varphi_i is defined as the volume of a constituent ''V'i'' divided by the volume of all constituents of the mixture ''V'' prior to mixing:
:\varphi_i = \frac .
Being dimensionless quantit ...
.
Properties
Mole fraction is used very frequently in the construction of phase diagrams. It has a number of advantages:
* it is not temperature dependent (as is molar concentration) and does not require knowledge of the densities of the phase(s) involved
* a mixture of known mole fraction can be prepared by weighing off the appropriate masses of the constituents
* the measure is ''symmetric'': in the mole fractions ''x'' = 0.1 and ''x'' = 0.9, the roles of 'solvent' and 'solute' are reversed.
* In a mixture of ideal gas
An ideal gas is a theoretical gas composed of many randomly moving point particles that are not subject to interparticle interactions. The ideal gas concept is useful because it obeys the ideal gas law, a simplified equation of state, and is ...
es, the mole fraction can be expressed as the ratio of partial pressure
In a mixture of gases, each constituent gas has a partial pressure which is the notional pressure of that constituent gas as if it alone occupied the entire volume of the original mixture at the same temperature. The total pressure of an ideal g ...
to total pressure
Pressure (symbol: ''p'' or ''P'') is the force applied perpendicular to the surface of an object per unit area over which that force is distributed. Gauge pressure (also spelled ''gage'' pressure)The preferred spelling varies by country and eve ...
of the mixture
* In a ternary mixture one can express mole fractions of a component as functions of other components mole fraction and binary mole ratios:
*:
Differential quotients can be formed at constant ratios like those above:
:
or
:
The ratios ''X'', ''Y'', and ''Z'' of mole fractions can be written for ternary and multicomponent systems:
:
These can be used for solving PDEs like:
:
or
:
This equality can be rearranged to have differential quotient of mole amounts or fractions on one side.
:
or
:
Mole amounts can be eliminated by forming ratios:
:
Thus the ratio of chemical potentials becomes:
:
Similarly the ratio for the multicomponents system becomes
:
Related quantities
Mass fraction
The mass fraction ''wi'' can be calculated using the formula
:
where ''Mi'' is the molar mass of the component ''i'' and ''M̄'' is the average molar mass
In chemistry, the molar mass () (sometimes called molecular weight or formula weight, but see related quantities for usage) of a chemical substance ( element or compound) is defined as the ratio between the mass () and the amount of substance ...
of the mixture.
Molar mixing ratio
The mixing of two pure components can be expressed introducing the amount or molar mixing ratio of them . Then the mole fractions of the components will be:
:
The amount ratio equals the ratio of mole fractions of components:
:
due to division of both numerator and denominator by the sum of molar amounts of components. This property has consequences for representations of phase diagrams using, for instance, ternary plots.
Mixing binary mixtures with a common component to form ternary mixtures
Mixing binary mixtures with a common component gives a ternary mixture with certain mixing ratios between the three components. These mixing ratios from the ternary and the corresponding mole fractions of the ternary mixture x1(123), x2(123), x3(123) can be expressed as a function of several mixing ratios involved, the mixing ratios between the components of the binary mixtures and the mixing ratio of the binary mixtures to form the ternary one.
:
Mole percentage
Multiplying mole fraction by 100 gives the mole percentage, also referred as amount/amount percent bbreviated as (n/n)% or mol %
Mass concentration
The conversion to and from mass concentration ''ρi'' is given by:
:
where ''M̄'' is the average molar mass of the mixture.
Molar concentration
The conversion to molar concentration ''ci'' is given by:
:
where ''M̄'' is the average molar mass of the solution, ''c'' is the total molar concentration and ''ρ'' is the density
Density (volumetric mass density or specific mass) is the ratio of a substance's mass to its volume. The symbol most often used for density is ''ρ'' (the lower case Greek letter rho), although the Latin letter ''D'' (or ''d'') can also be u ...
of the solution.
Mass and molar mass
The mole fraction can be calculated from the mass
Mass is an Intrinsic and extrinsic properties, intrinsic property of a physical body, body. It was traditionally believed to be related to the physical quantity, quantity of matter in a body, until the discovery of the atom and particle physi ...
es ''mi'' and molar mass
In chemistry, the molar mass () (sometimes called molecular weight or formula weight, but see related quantities for usage) of a chemical substance ( element or compound) is defined as the ratio between the mass () and the amount of substance ...
es ''Mi'' of the components:
:
Spatial variation and gradient
In a spatially non-uniform mixture, the mole fraction gradient triggers the phenomenon of diffusion
Diffusion is the net movement of anything (for example, atoms, ions, molecules, energy) generally from a region of higher concentration to a region of lower concentration. Diffusion is driven by a gradient in Gibbs free energy or chemical p ...
.
References
{{Authority control
Dimensionless quantities of chemistry