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LIBRIS Formathandbok  (Information om MARC21)
FältnamnIndikatorerMetadata
00003257naa a2200325 4500
001oai:DiVA.org:umu-84913
003SwePub
008140122s2012 | |||||||||||000 ||eng|
024a https://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-849132 URI
024a https://doi.org/10.1002/9780470027318.a5111.pub22 DOI
040 a (SwePub)umu
041 a engb eng
042 9 SwePub
072 7a ref2 swepub-contenttype
072 7a kap2 swepub-publicationtype
100a Axner, Ove,d 1957-u Umeå universitet,Institutionen för fysik4 aut0 (Swepub:umu)ovax0001
2451 0a Laser spectrometric techniques in analytical atomic spectrometry
264 c 2012-03-15
264 1a Chichester, UK :b John Wiley & Sons, Ltd,c 2012
338 a print2 rdacarrier
520 a The main purpose of this article is to describe the theory, instrumentation, and analytical performance of laser analytical atomic spectrometry, focusing on absorption, fluorescence, and ionization techniques. The structure of the article is such that it first provides an outline of the theory of light-matter interactions that prevail for each type of technique as well as of the most common modulation techniques, primarily, wavelength modulation (WM). This is followed by a section that covers the most important types of instrumentation used. The article finally provides a detailed discussion on the specific instrumentation, mode of operation, use, performance, and applications (both analytical and diagnostic) of each technique. In terms of laser atomic absorption, the focus of the discussion is on the use of approaches to enhance the detection capability by either reducing the amount of noise (as is done by the wavelength modulation absorption spectrometry (WMAS) technique) or by providing an extended interaction length (giving rise to cavity-enhanced absorption spectrometry (CEAS) techniques in general, and cavity ring-down spectrometry (CRDS) in particular). Laser atomic fluorescence techniques (often referred to as laser-excited atomic fluorescence spectrometry (LEAFS)) as well as laser ionization techniques (termed either laser-enhanced ionization (LEI) or resonance ionization spectrometry (RIS)) are also covered in some detail. It is shown that several of these techniques are capable of detecting a variety of elements in liquid samples down to low picogram per milliliter (pg mL−1) or parts-per-trillion (ppt) concentrations and in low femtogram amounts. Also other properties of the techniques, e.g. selectivity and linear dynamic range (LDR), are in general superior to those of conventional (nonlaser-based techniques).
650 7a NATURVETENSKAPx Kemix Analytisk kemi0 (SwePub)104012 hsv//swe
650 7a NATURAL SCIENCESx Chemical Sciencesx Analytical Chemistry0 (SwePub)104012 hsv//eng
653 a analytisk kemi
653 a Analytical Chemistry
700a Galbács, Gáboru University of Szeged, Szeged, Hungary4 aut
710a Umeå universitetb Institutionen för fysik4 org
773t Encyclopedia of analytical chemistryd Chichester, UK : John Wiley & Sons, Ltdz 9780470027318
8564 8u https://urn.kb.se/resolve?urn=urn:nbn:se:umu:diva-84913
8564 8u https://doi.org/10.1002/9780470027318.a5111.pub2

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