Ultraviolet-visible spectroscopy introduction



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857-Ultraviolet-Visible-Spectroscopy



á
857
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ULTRAVIOLET-VISIBLE SPECTROSCOPY
INTRODUCTION
Ultraviolet-visible (UV-Vis) spectra are derived when the interaction between incident radiation and the electron cloud in a
chromophore results in an electronic transition involving the promotion of one or more of the outer shell or the bonding elec-
trons from a ground state into a state of higher energy. The UV and visible spectral bands of substances generally are broad
and do not possess a high degree of specificity for compound identification. Nevertheless, they are suitable for quantitative
assays and, for many substances, are useful as an additional means of identification.
In the Beer–Lambert law the absorbance (A
l
) of a solution at given wavelength, 
l
, is defined as the logarithm to base 10 of
the reciprocal of the transmittance (T
l
):
I
l
= intensity of the transmitted radiation at the same wavelength 
l
I
l
0
= intensity of the incident radiation at wavelength 
l
In the absence of any other physical or chemical factors, A
l
is proportional to path length, b, through which the radiation
passes, and to the concentrationc, of the substance in the solution in accordance with the following:
A
l

e
l
cb
e
l
= molar absorptivity
c = solute concentration (mol/L)
b = path length (cm)
If the concentration, c, is expressed in g/L, the constant 
e
l
becomes a
l
, which is called the absorptivity.
The expression
which represents the specific absorbance of a dissolved substance, refers to the absorbance of a 10-g/L solution (1% m/v) in a
1-cm cell measured at a defined wavelength so that:
M = molar concentration of the solution
When solutions are observed in 1-cm cells, concentrations of about 10 
m
g of the specimen per mL often will produce absor-
bances of 0.2–0.8 in the UV or visible region.
For discussion of the theory and principles of measurements, see Ultraviolet-Visible Spectroscopy—Theory and Practice 
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a general information chapter that is not a mandatory resource.

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