Ultraviolet-visible spectroscopy introduction



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857-Ultraviolet-Visible-Spectroscopy

Control of Wavelengths
Ensure that the accuracy of the wavelength axis (x-axis) over the intended operational range is correct within acceptable
limits.
For non-diode array instruments, wavelength accuracy and precision are determined over the operational range using at
least six replicate measurements. For wavelength accuracy, the difference of the mean measured value to the certified value of
the CRM must be within ±1 nm in the UV region (200–400 nm), and in the visible region (400–700 nm) must be within ±2
nm. For wavelength precision, the standard deviation of the mean must not exceed 0.5 nm. For diode array instruments, only
one wavelength accuracy measurement is required, and no precision determination needs to be performed. The difference be-
tween the certified and measured value of the CRM must not exceed ±1 nm in the UV region (200–400 nm), and in the visible
region (400–700 nm) must not exceed ±2 nm.
ATOMIC
LINE
SPECTRA
This procedure is described as the primary application because the emission lines produced from a discharge lamp are char-
acteristic of the source element and, as a fundamental physical standard, these wavelengths have been measured with an un-
certainty of NMT ±0.01 nm. In solution spectrometry, the wavelength accuracy required rarely exceeds 0.5 nm. For these rea-
sons, the atomic line standard values are cited without uncertainty. The lamp needs to be placed at the source position in the
spectrophotometer; thus, it can be used only in spectrophotometers that can be operated in a single-beam intensity mode
and practically should be implemented only on a system designed to accommodate these sources, e.g., as an accessory.
A commonly employed low-pressure mercury lamp has a number of intense lines that cover a large part of the UV and visi-
ble spectra. Two deuterium lines from the source at 486.0 and 656.1 nm often are used by manufacturers as an internal cali-
bration check and can be used for diagnostic purposes (Table 1).
1

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