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Imaging Time-Resolved Electrothermal Atomization Laser-Excited Atomic Fluorescence Spectrometry for Determination of Mercury in Seawater

https://doi.org/10.1021/ac2005982
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28/28 checkable references clean · checked 2026-07-23

Every reference with a DOI in the deposited reference list resolved to a known work in Crossref or DataCite at the dated check, and none carried a retraction, withdrawal, or removal notice.

3 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 28 checked references that resolve
resolves10.1021/ac60207a052
Atomic Fluorescence Spectroscopy as a Means of Chemical Analysis.
resolves10.1021/ac60207a053
Determination of Zinc, Cadmium, and Mercury by Atomic Fluorescence Flame Spectormetry.
resolves10.1021/ac60306a030
Laser-excited atomic fluorescence flame spectrometry
resolves10.1016/0584-8547(76)80049-3
The use of a dye laser for the detection of sub-picogram amounts of lead and iron by atomic fluorescence spectrometry
resolves10.1016/S0584-8547(01)00265-8
Laser excited atomic fluorescence spectrometry — a review
resolves10.1016/0003-2670(92)85142-S
Development of a laser-excited atomic fluorescence spectrometer and a method for the direct determination of lead in Great Lakes waters
resolves10.1016/0584-8547(96)01489-9
Use of laser-excited atomic fluorescence spectrometry with a novel diffusive graphite tube electrothermal atomizer for the direct determination of silver in sea water and in solid reference materials
resolves10.1016/S0584-8547(02)00200-8
Direct determination of aluminum content in seawater by electrothermal atomization-laser excited atomic fluorescence
resolves10.1016/S0039-9140(03)00102-4
Molecular and atomic ultra trace analysis by laser induced fluorescence with OPO system and ICCD camera
resolves10.1007/s00216-003-1795-3
Laser-induced fluorescence with an OPO system. Part II: direct determination of lead content in seawater by electrothermal atomization–laser-excited atomic fluorescence (ETA–LEAF)
resolves10.1016/j.aca.2010.02.014
Determination of iron in seawater by electrothermal atomic absorption spectrometry and atomic fluorescence spectrometry: A comparative study
resolves10.1007/s00216-002-1472-y
Laser-induced fluorescence with an OPO system. Part I. Optimisation of the analytical system by use of experimental design methodology. Application to the direct quantification of traces of benzo[ a ]pyrene
resolves10.1016/0304-4203(83)90069-5
Determination of mercury in seawater at sub-nanogram per liter levels
resolves10.1016/0025-326X(91)90470-D
Mercury concentrations in surface waters of the English channel: A cooperative study
resolves10.1155/S1463924695000113
Atomic fluorescence determination of mercury in fresh water ecosystems
resolves10.1016/0584-8547(93)80066-4
Two-step laser excited atomic fluorescence spectrometry determination of mercury
resolves10.1016/0039-9140(94)00181-2
Determination of mercury in microwave-digested soil by laser-excited atomic fluorescence spectrometry with electrothermal atomization
resolves10.1080/00387019608007140
The Determination of Mercury in Silver by Laser-Excited Atomic Fluorescence Spectrumetry with Electrothermal Atomization
resolves10.1016/j.aca.2006.04.015
Evaluation of a tungsten coil atomization-laser-induced fluorescence detection approach for trace elemental analysis
resolves10.1016/S0003-2670(98)00178-0
Electrothermic factors optimization in electrothermal atomic absorption spectrometry via an optimal experimental design matrix
resolves10.1016/S0003-2670(97)00305-X
Spectroscopic factors optimization in electrothermal atomic absorption spectrometry via an optimal experimental design matrix
resolves10.1016/0584-8547(96)01474-7
Noble metals as permanent modifiers for the determination of mercury by electrothermal atomic absorption spectrometry
resolves10.1016/j.sab.2006.11.010
On the uniforming of the atomization process for inorganic and organic mercury in graphite furnace atomic absorption spectrometry
resolves10.1039/A801119B
Usefulness of the chemical modification and the multi-injection technique approaches in the electrothermal atomic absorption spectrometric determination of silver, arsenic, cadmium, chromium, mercury, nickel and lead in sea-water
resolves10.1016/S0584-8547(02)00005-8
Determination of Cd and Pb in seawater by graphite furnace atomic absorption spectrometry with the use of hydrofluoric acid as a chemical modifier
resolves10.1016/0584-8547(96)01486-3
Determination of lead in seawater by electrothermal atomic absorption spectrometry with transversely heated furnace by using oxalic acid or Pd/Mg as modifiers
resolves10.1039/ja9920700383
Direct determination of cadmium in sea-water using electrothermal atomization atomic absorption spectrometry with Zeeman-effect background correction and oxalic acid as a chemical modifier
resolves10.1103/PhysRevA.8.2980
Formation and Decay of Excited<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:msub><mml:mrow><mml:mi mathvariant="normal">Hg</mml:mi></mml:mrow><mml:mrow><mml:mn>2</mml:mn></mml:mrow></mml:msub></mml:mrow></mml:math>Molecules in Hg-<mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:msub><mml:mrow><mml:mi mathvariant="normal">N</mml:mi></mml:mrow><mml:mrow><mml:mn>2</mml:mn></mml:mrow></mml:msub></mml:mrow></mml:math>Mixtures
The 3 references without a DOI — listed, not checked
no DOI — not checkedFurh, J. R.; Martin, W. C.; Musgrove, A.; Sugar, J.NIST Atomic Spectra Data Base, line data, version 2 [Online];Wiese, W. L., Ed.National Institute of Standards and Technology:Gaithersburg, MD, 2002.
no DOI — not checkedref29/cit29
no DOI — not checkedref30/cit30
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